特大城市
大都市区
弹性(材料科学)
城市复原力
气候变化
电力系统
心理弹性
大都市圈
环境规划
气候系统
持续性
自然资源经济学
全球变暖
业务
可持续发展
功率(物理)
城市化
环境科学
医疗保健系统
环境资源管理
人类健康
地理
环境保护
气候弹性
公共卫生
人口
经济增长
发电
作者
Zhixue Yang,Hongcai Zhang,Hui Li,Scott Moura,Song Yonghua
标识
DOI:10.1038/s43247-026-03198-4
摘要
The escalating frequency of extreme heatwaves coupled with the deep decarbonization of the power system pose growing challenges to the reliable operation of metropolitan power systems. In megacity clusters, heatwave-induced blackouts leave densely populated and vulnerable communities exposed to prolonged thermal stress, significantly elevating urban health risks. In response, we proposes a health-aware decarbonization framework that integrates meteorology, power systems, and urban health—offering a comprehensive, systems-level solution to support the development of resilient, and sustainable cities under intensifying climate stress. Our results indicate that while decarbonizing the power system is crucial for meeting climate goals, it may unintentionally increase heat-related deaths in large urban areas. In the Guangdong-Hong Kong-Macao megacity cluster, the number of cities with excess death rates over 3% is expected to rise from 1 in 2030 to 9 by 2050. However, health-aware decarbonization strategies can cut excess deaths by 55.38% -65.01% and reduce total annual costs by 8.71% -13.63%. Decarbonization of the power system is crucial for meeting climate goals, but it may unintentionally increase heat-related mortality in large urban areas such as Guangdong-Hong Kong-Macao, according to an analysis that uses climate, weather, and health data and a statistical approach
科研通智能强力驱动
Strongly Powered by AbleSci AI