<?xml version="1.0" encoding="UTF-8"?><WMS_Capabilities version="1.3.0" updateSequence="4606" xmlns="http://www.opengis.net/wms" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.opengis.net/wms https://geoserver.webservice-energy.org/geoserver/schemas/wms/1.3.0/capabilities_1_3_0.xsd">
  <Service>
    <Name>WMS</Name>
    <Title>Webservice-Energy (WMS)</Title>
    <Abstract>A compliant implementation of WMS plus most of the SLD extension (dynamic styling). Can also generate PDF, SVG, KML, GeoRSS</Abstract>
    <KeywordList>
      <Keyword>WFS</Keyword>
      <Keyword>WMS</Keyword>
      <Keyword>GEOSERVER</Keyword>
    </KeywordList>
    <OnlineResource xlink:type="simple" xlink:href="http://geocatalog.webservice-energy.org"/>
    <ContactInformation>
      <ContactPersonPrimary>
        <ContactPerson>Lionel MENARD</ContactPerson>
        <ContactOrganization>MINES ParisTech</ContactOrganization>
      </ContactPersonPrimary>
      <ContactPosition>Research Engineer</ContactPosition>
      <ContactAddress>
        <AddressType>Work</AddressType>
        <Address>1, rue Claude Daunesse - CS 10207</Address>
        <City>SOPHIA ANTIPOLIS</City>
        <StateOrProvince/>
        <PostCode>06904</PostCode>
        <Country>FRANCE</Country>
      </ContactAddress>
      <ContactVoiceTelephone/>
      <ContactFacsimileTelephone/>
      <ContactElectronicMailAddress>lionel.menard@mines-paristech.fr</ContactElectronicMailAddress>
    </ContactInformation>
    <Fees>NONE</Fees>
    <AccessConstraints>NONE</AccessConstraints>
  </Service>
  <Capability>
    <Request>
      <GetCapabilities>
        <Format>text/xml</Format>
        <DCPType>
          <HTTP>
            <Get>
              <OnlineResource xlink:type="simple" xlink:href="https://geoserver.webservice-energy.org/geoserver/energeo/ows?SERVICE=WMS&amp;"/>
            </Get>
            <Post>
              <OnlineResource xlink:type="simple" xlink:href="https://geoserver.webservice-energy.org/geoserver/energeo/ows?SERVICE=WMS&amp;"/>
            </Post>
          </HTTP>
        </DCPType>
      </GetCapabilities>
      <GetMap>
        <Format>image/png</Format>
        <Format>application/atom+xml</Format>
        <Format>application/json;type=utfgrid</Format>
        <Format>application/pdf</Format>
        <Format>application/rss+xml</Format>
        <Format>application/vnd.google-earth.kml+xml</Format>
        <Format>application/vnd.google-earth.kml+xml;mode=networklink</Format>
        <Format>application/vnd.google-earth.kmz</Format>
        <Format>image/geotiff</Format>
        <Format>image/geotiff8</Format>
        <Format>image/gif</Format>
        <Format>image/jpeg</Format>
        <Format>image/png; mode=8bit</Format>
        <Format>image/svg+xml</Format>
        <Format>image/tiff</Format>
        <Format>image/tiff8</Format>
        <Format>image/vnd.jpeg-png</Format>
        <Format>image/vnd.jpeg-png8</Format>
        <Format>text/html; subtype=openlayers</Format>
        <Format>text/html; subtype=openlayers2</Format>
        <Format>text/html; subtype=openlayers3</Format>
        <DCPType>
          <HTTP>
            <Get>
              <OnlineResource xlink:type="simple" xlink:href="https://geoserver.webservice-energy.org/geoserver/energeo/ows?SERVICE=WMS&amp;"/>
            </Get>
          </HTTP>
        </DCPType>
      </GetMap>
      <GetFeatureInfo>
        <Format>text/plain</Format>
        <Format>application/vnd.ogc.gml</Format>
        <Format>text/xml</Format>
        <Format>application/vnd.ogc.gml/3.1.1</Format>
        <Format>text/xml; subtype=gml/3.1.1</Format>
        <Format>text/html</Format>
        <Format>application/json</Format>
        <DCPType>
          <HTTP>
            <Get>
              <OnlineResource xlink:type="simple" xlink:href="https://geoserver.webservice-energy.org/geoserver/energeo/ows?SERVICE=WMS&amp;"/>
            </Get>
          </HTTP>
        </DCPType>
      </GetFeatureInfo>
    </Request>
    <Exception>
      <Format>XML</Format>
      <Format>INIMAGE</Format>
      <Format>BLANK</Format>
      <Format>JSON</Format>
    </Exception>
    <Layer>
      <Title>Webservice-Energy (WMS)</Title>
      <Abstract>A compliant implementation of WMS plus most of the SLD extension (dynamic styling). Can also generate PDF, SVG, KML, GeoRSS</Abstract>
      <!--All supported Coordinate Reference Systems:-->
      <CRS>AUTO:42001</CRS>
      <CRS>AUTO:42002</CRS>
      <CRS>AUTO:42003</CRS>
      <CRS>AUTO:42004</CRS>
      <CRS>AUTO:97001</CRS>
      <CRS>AUTO:97002</CRS>
      <CRS>AUTO:97003</CRS>
      <CRS>AUTO:97004</CRS>
      <CRS>CRS:27</CRS>
      <CRS>CRS:83</CRS>
      <CRS>CRS:84</CRS>
      <CRS>EPSG:2000</CRS>
      <CRS>EPSG:2001</CRS>
      <CRS>EPSG:2002</CRS>
      <CRS>EPSG:2003</CRS>
      <CRS>EPSG:2004</CRS>
      <CRS>EPSG:2005</CRS>
      <CRS>EPSG:2006</CRS>
      <CRS>EPSG:2007</CRS>
      <CRS>EPSG:2008</CRS>
      <CRS>EPSG:2009</CRS>
      <CRS>EPSG:2010</CRS>
      <CRS>EPSG:2011</CRS>
      <CRS>EPSG:2012</CRS>
      <CRS>EPSG:2013</CRS>
      <CRS>EPSG:2014</CRS>
      <CRS>EPSG:2015</CRS>
      <CRS>EPSG:2016</CRS>
      <CRS>EPSG:2017</CRS>
      <CRS>EPSG:2018</CRS>
      <CRS>EPSG:2019</CRS>
      <CRS>EPSG:2020</CRS>
      <CRS>EPSG:2021</CRS>
      <CRS>EPSG:2022</CRS>
      <CRS>EPSG:2023</CRS>
      <CRS>EPSG:2024</CRS>
      <CRS>EPSG:2025</CRS>
      <CRS>EPSG:2026</CRS>
      <CRS>EPSG:2027</CRS>
      <CRS>EPSG:2028</CRS>
      <CRS>EPSG:2029</CRS>
      <CRS>EPSG:2030</CRS>
      <CRS>EPSG:2031</CRS>
      <CRS>EPSG:2032</CRS>
      <CRS>EPSG:2033</CRS>
      <CRS>EPSG:2034</CRS>
      <CRS>EPSG:2035</CRS>
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      <CRS>EPSG:2037</CRS>
      <CRS>EPSG:2038</CRS>
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      <CRS>EPSG:2040</CRS>
      <CRS>EPSG:2041</CRS>
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      <CRS>EPSG:2048</CRS>
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      <CRS>EPSG:2091</CRS>
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      <CRS>EPSG:2157</CRS>
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      <CRS>EPSG:2161</CRS>
      <CRS>EPSG:2162</CRS>
      <CRS>EPSG:2163</CRS>
      <CRS>EPSG:2164</CRS>
      <CRS>EPSG:2165</CRS>
      <CRS>EPSG:2166</CRS>
      <CRS>EPSG:2167</CRS>
      <CRS>EPSG:2168</CRS>
      <CRS>EPSG:2169</CRS>
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      <CRS>EPSG:2171</CRS>
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      <CRS>EPSG:2174</CRS>
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      <CRS>EPSG:2242</CRS>
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      <CRS>EPSG:2245</CRS>
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      <CRS>EPSG:2255</CRS>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

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(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem&#13;
(2)     Life time: 15 years vs 20 years vs 25 years&#13;
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(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)&#13;
(5)     Foundation type: only fixed (xfond) vs floating &amp; fixed (both: bfond)&#13;
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)&#13;
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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        <Abstract><![CDATA[Legend for understanding map title names and their related configuration eg: cc_15_50_lOM_bfond_hFR_Lo_geo
Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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        <Abstract><![CDATA[Legend for understanding map title names and their related configuration eg: cc_15_50_lOM_bfond_hFR_Lo_geo
Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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        <Abstract><![CDATA[Legend for understanding map title names and their related configuration eg: cc_15_50_lOM_bfond_hFR_Lo_geo
Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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        <Abstract><![CDATA[Legend for understanding map title names and their related configuration eg: cc_15_50_lOM_bfond_hFR_Lo_geo
Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
]]></Abstract>
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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Each parameter is separated with an underscore (_)

(1)     Impact category: cc= climate change, res= resources, daly= daly, eco= ecosystem
(2)     Life time: 15 years vs 20 years vs 25 years

(3)     Number of wind turbines per farm: 30 vs 40 vs 50 (max.capacity : 50 wind turbines per farm)
(4)     Maintenance scenario: low Operating Maintenance (lOM) or high Operating Maintenance (hOM)
(5)     Foundation type: only fixed (xfond) vs floating & fixed (both: bfond)
(6)     Failure rate: low Failure Rate (lFR) or high Failure Rate (hFR)
(7)     Electricity loss: 4 % electricity loss included (Lo) vs non-included electricity loss (NoLo)
(8)     geo: GeoTIFF file
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