
(固定和漂浮式海上风电全球技术潜力总和,来源:WBG)(全球海上风电增长预期,来源:GWEC,IRENA)2010-2020年全球海上风电LCOE下降48%(到2050年,海上风电对比化石燃料将具有更强竞争力,来源:IRENA)
(每安装1GW可再生能源年度减排二氧化碳量比较,来源:IEA)明阳MySE5.5MW机组年可利用小时可超5000小时2022年1-4月,47台明阳MySE6.45-180机组(海上风电可有效促进生物多样性,作者:Hendrik Gheerardyn)(比利时海上风电设施上的附着生物群落,包括蓝贻贝、羽状海葵、海胆、普通海星、藤壶和管虫)(A为人工鱼礁;B为测风塔;C为风机#1;D为风机#2,来源:《Journal of Marine Science and Technology》)Beleolico海上风电项目是意大利首个海上风电项目[1] H. Bruce Franklin, Ocean Winds:Bringing Us Renewable Fish With Renewable Energy,E-The Environmental Magazine,2021[2] WBG,Key Factors for SuccessfulDevelopment of Offshore Wind in Emerging Markets,2021[3] OREAC, The Power of Our Ocean,2020[4] IEA,Sustainable Recovery: World EnergyOutlook Special Report,2020[5] IRENA,World Energy Transitions Outlook:1.5°C Pathway,2021[6] WBG, Roadmap for offshore wind inVietnam,2021[7] GWEC,GLOBAL WIND REPORT 2022,2022[8] IRENA,FUTURE OF WIND,2019[9] Steven Degraer et al.,Offshore windfarm artificial reefs affect ecosystem structure and functioning : a synthesis,Oceanography,2020[10] RBINS,Offshore Wind Farms And TheMarine Ecosystem: 10 Years of Monitoring,2020[11] Elizabeth T. Methratta, William R.Dardick, Meta-Analysis of Finfish Abundance at Offshore Wind Farms, Reviews inFisheries Science & Aquaculture,2019[12] Ting-Chieh Huang et al.,Evaluating thefish aggregation effect of wind turbine facilities by using scientific echosounder in Nanlong wind farm area, western Taiwan scientific echo sounder inNanlong wind farm area, western Taiwan,2021[13] Katherine Hafner, Virginia’s firstoffshore wind turbines have become a haven for marine life,2021▓来源:明阳智能
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