Air-conditioning replacement to enhance the reliability of renewable power systems under extreme weather risks.

IF 3.8 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-07-23 eCollection Date: 2025-08-01 DOI:10.1093/pnasnexus/pgaf230
Lei Zhu, Zhuang Liang, Zhihao Yan, Xi Ming, Hongbo Duan, Bin Su, Shouyang Wang
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引用次数: 0

Abstract

The increasing demand for residential heating and cooling significantly affects power systems, especially during extreme weather events. The replacement of outdated room air-conditioning (RAC) with a high-efficiency model demonstrated considerable potential in alleviating this effect. In this study, the impacts of extreme warm, cold, and drought events on power demand and supply are explored. By simulating residential heating and cooling loads in southern Chinese cities and integrating these loads into a provincial power dispatch model, we confirm the positive role of RAC replacement in carbon mitigation and power system cost reductions. It also enhances the power system reliability, especially facing extreme weathers. Specifically, RAC replacement may reduce peak power demand by up to 12.2% for advanced high-efficiency units. Compared with the battery storage system, RAC replacement has better cost and emission reductions, given the same budget. This research highlights the pivotal role of improving residential energy efficiency in the transition toward a green power system in China, especially the pronounced benefits of RAC replacement in enhancing energy resilience when facing extreme weather risks.

更换空调,提高可再生能源系统在极端天气风险下的可靠性。
住宅供暖和制冷需求的增加显著影响电力系统,特别是在极端天气事件期间。将过时的房间空调(RAC)替换为高效率的空调模式,在缓解这种影响方面显示出相当大的潜力。本研究探讨了极端暖、冷和干旱事件对电力需求和供应的影响。通过模拟中国南方城市居民供热和制冷负荷,并将这些负荷整合到省级电力调度模型中,我们证实了RAC替代在碳减排和电力系统成本降低方面的积极作用。它还提高了电力系统的可靠性,特别是在极端天气下。具体来说,对于先进的高效机组,替换RAC可以减少高达12.2%的峰值功率需求。在预算相同的情况下,与电池储能系统相比,RAC更换具有更好的成本和减排效果。本研究强调了在中国向绿色电力系统转型的过程中,提高住宅能源效率的关键作用,特别是在面临极端天气风险时,替代RAC在增强能源弹性方面的显著优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.80
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