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Adapting to climate change: Long-term impact of wind resource changes on China's power system resilience

Systems and Control 2024-01-26 v2 Systems and Control Atmospheric and Oceanic Physics Physics and Society

Abstract

Modern society's reliance on power systems is at risk from the escalating effects of wind-related climate change. Yet, failure to identify the intricate relationship between wind-related climate risks and power systems could lead to serious short- and long-term issues, including partial or complete blackouts. Here, we develop a comprehensive framework to assess China's power system resilience across various climate change scenarios, enabling a holistic evaluation of the repercussions induced by wind-related climate change. Our findings indicate that China's current wind projects and planning strategies could be jeopardized by wind-related climate change, with up to a 12\% decline in regional wind power availability. Moreover, our results underscore a pronounced vulnerability of power system resilience amidst the rigors of hastened climate change, unveiling a potential amplification of resilience deterioration, even approaching fourfold by 2060 under the most severe scenario, relative to the 2020 benchmark. This work advocates for strategic financial deployment within the power sector aimed at climate adaptation, enhancing power system resilience to avert profound losses from long-term, wind-influenced climatic fluctuations.

Keywords

Cite

@article{arxiv.2311.16572,
  title  = {Adapting to climate change: Long-term impact of wind resource changes on China's power system resilience},
  author = {Jiaqi Ruan and Xiangrui Meng and Yifan Zhu and Gaoqi Liang and Xianzhuo Sun and Huayi Wu and Huijuan Xiao and Mengqian Lu and Pin Gao and Jiapeng Li and Wai-Kin Wong and Zhao Xu and Junhua Zhao},
  journal= {arXiv preprint arXiv:2311.16572},
  year   = {2024}
}

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