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Future projections of offshore wind energy resources in China using CMIP6 simulations and a deep learning-based downscaling method

机译:中国海上风能资源的未来预测使用CMIP6模拟和基于深度学习的镇压方法

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摘要

Good knowledge of future wind energy resources is crucial for sitting and planning studies of wind farms. The simulation results from the Coupled Model Intercomparison Project Phase 6 (CMIP6) and a proposed new downscaling method based on the bidirectional gated recurrent unit (BiGRU) are both used in this paper to study future offshore wind energy resources in China. The proposed new down scaling method is validated and compared to two traditional methods. It is found that the spatial patterns of downscaled wind speed are highly consistent with the reference data, and biases are significantly reduced by the new method, especially in coastal and shallow water areas. Using the new method, we downscale the CMIP6 future projected simulation results and generate a new dataset of offshore wind speeds in China for the period of 2021-2100 with a resolution of 0.25 degrees. Multi-model ensemble (MME) results project small decreases in the offshore wind speed and wind power density over the East China Sea and increases in those parameters over the South China Sea, for the middle and end of the 21st Century (2041-2060 and 2081-2100) under two representative scenarios (SSP2-4.5 and SSP5-8.5). (C) 2020 Elsevier Ltd. All rights reserved.
机译:对未来风能资源的良好知识对于风电场的坐姿和规划研究至关重要。耦合模型离心项目阶段6(CMIP6)和基于双向门控复发单元(BIGRU)的建议新的缩小方法的仿真结果均在本文中使用了中国未来海上风能资源。建议的新缩小缩放方法被验证并与两种传统方法进行比较。结果发现,较低的风速的空间模式与参考数据高度一致,新方法显着降低了偏差,特别是在沿海和浅水区。使用新方法,我们降低了CMIP6未来预计的仿真结果,并在中国的2021-2100期间在中国的海上风速新数据集,分辨率为0.25度。多模型集合(MME)结果项目在东海海上风速和风电密度下降,在21世纪中间和结束的南海(2041-2060)中增加了南海的参数上涨。 2081-2100)在两个代表性场景下(SSP2-4.5和SSP5-8.5)。 (c)2020 elestvier有限公司保留所有权利。

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