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Climate change impacts on the future offshore wind energy resource in China

机译:气候变化对中国未来海上风能资源的影响

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摘要

Chinese offshore wind energy sector is experiencing a rapid growth. It is expected that China will become the world leader in terms of installed offshore wind energy capacity in the upcoming years. A multi-model ensemble of eight simulations from COR-DEX project was considered to evaluate future offshore wind energy projections along the Chinese coast under the RCP8.5 warming scenario. Furthermore, offshore wind energy resource was classified attending to the richness of the resource, stability of the resource, risk and economic factors. The reliability of the CORDEX multi-model ensemble was analyzed by comparing CORDEX wind speed with two different datasets: in-situ data from oceanic buoys and ERA5 database. A general wind power density decrease was observed for the near future and the far future. At seasonal scale, differences were found depending on the season. Thus, a clear reduction was projected during spring, whilst increases were observed in wide areas during winter or autumn. Regarding the classification of the future offshore wind energy resource for the upcoming decades, most of the Chinese coastal area was defined as good or excellent due to its high offshore wind energy richness that compensate the low values on stability of the resource and risk factor.
机译:中国海上风能部门正在经历快速增长。预计中国将在即将到来的多年来安装海上风能能力方面成为世界领导者。来自Cor-Dex项目的八种模拟的多模型集合被认为是在RCP8.5温暖场景下评估中国海岸的未来海上风能预测。此外,海上风能资源被分类为资源丰富,资源稳定,风险和经济因素的丰富性。通过将Cindex风速与两个不同的数据集进行比较来分析CORDEX多模型集合的可靠性:来自海洋浮标和ERA5数据库的原位数据。对于不久的将来和远未来,观察到一般风力电力密度减少。在季节性范围内,根据季节发现差异。因此,在春天期间投射了清晰的减少,而在冬季或秋季的广泛区域中观察到增加。关于未来海上风能资源的分类,即将到来的十年,大多数中国沿海地区由于其高海上风能丰富度而定义为良好或优秀,以补偿资源稳定性和风险因素的低价值。

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1616-1616|共1页
  • 作者单位

    CRETUS Institute Group of Nonlinear Physics Faculty of Physics University of Santiago de Com-postela Santiago de Compostela 15782 Spain;

    CRETUS Institute Group of Nonlinear Physics Faculty of Physics University of Santiago de Com-postela Santiago de Compostela 15782 Spain;

    CRETUS Institute Group of Nonlinear Physics Faculty of Physics University of Santiago de Com-postela Santiago de Compostela 15782 Spain;

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