欢迎访问《应用生态学报》官方网站,今天是

应用生态学报 ›› 2026, Vol. 37 ›› Issue (7): 2343-2352.doi: 10.13287/j.1001-9332.202607.029

• • 上一篇    下一篇

中国主要地级及以上城市空间形态与极端高温事件的关系

许树涛1, 李超骕2*, 杨华杰1   

  1. 1澳门城市大学城市与可持续发展研究院, 澳门 999078;
    2香港科技大学(广州)社会枢纽城市治理与设计学域, 广州 511453
  • 收稿日期:2025-12-25 接受日期:2026-05-19 出版日期:2026-07-18 发布日期:2027-01-18
  • 通讯作者: *E-mail: chaosuli@hkust-gz.edu.cn
  • 作者简介:许树涛, 男, 1995年生, 博士研究生。主要从事城市规划应对气候变化研究。E-mail: U23092120470@cityu.edu.mo
  • 基金资助:
    国家自然科学基金面上项目(52378079)和广东省基础与应用基础研究基金项目 (2024A1515011609)资助。

Relationship between urban spatial form and extreme heat events of major prefecture-level and above cities in China

XU Shutao1, LI Chaosu2*, YANG Huajie1   

  1. 1Institute of Urban and Sustainable Development, City University of Macau, Macau 999078, China;
    2Urban Governance and Design Thrust of Society Hub, Hong Kong University of Science and Technology (Guangzhou), Guangzhou 511453, China
  • Received:2025-12-25 Accepted:2026-05-19 Online:2026-07-18 Published:2027-01-18

摘要: 全球气候变化增加了城市极端高温事件的发生频率、强度和范围,同时城市化亦加剧了热岛效应。为缓解极端高温事件带来的负面影响,对城市空间形态优化的需求与日俱增。本研究将中国326个主要的地级及以上城市作为研究样本,采用第85百分位阈值从近30年逐日温度序列中确定2020年各城市的极端高温天数,识别极端高温事件分布特征,并运用负二项回归模型探究不同城市之间空间形态与极端高温事件的关系。结果表明:2020年,中国城市形态呈现明显区域差异,聚合度指数较高的城市主要集中于沿海城市、京津冀城市、成都、重庆和昆明等;平均形状指数和平均斑块分形指数较高的城市主要集中于华中和西南地区;最大斑块指数较高的城市主要集中于省会城市或经济发展水平高的城市。极端高温事件主要集中于华南、华中和西南地区城市。城市空间形态与极端高温事件显著相关。其中,聚合度指数与极端高温事件呈显著正相关,平均形状指数、最大斑块指数与极端高温事件呈显著负相关,增加城市中心紧凑度、推进城市发展边界管制、控制单一建设用地斑块面积,可缓解城市极端高温事件。

关键词: 城市形态, 气候变化, 极端高温, 韧性城市

Abstract: Global climate change has increased the frequency, intensity, and scope of extreme heat events, while urbanization has intensified the urban heat island effect. To alleviate the negative effects of extreme heat events, the demand for urban form optimization increases. Treating 326 major prefecture-level and above cities in China as the study objects, and applying the 85th percentile threshold to daily temperature time series spanning the past 30 years, we obtained the number of extreme heat days in each city in 2020, and identified the distribution characte-ristics of extreme heat events. We further explored the relationship between the spatial form of different cities and extreme heat events by using the negative binomial regression model. The spatial distribution of urban form and extreme heat events in 2020 exhibited pronounced regional differences. Cities exhibiting high aggregation index were mainly located in the coastal areas, the Beijing-Tianjin-Hebei region, Chengdu, Chongqing, and Kunming. Cities with higher mean shape index and mean patch fractal index were mainly concentrated in the Central China and Southwest China. Cities with higher largest patch index were mainly concentrated in provincial capitals or cities with high levels of economic development. In addition, extreme heat events occurred predominantly in the cities of South China, Central China, and Southwest China. The urban spatial forms were significantly associated with extreme heat events. Among them, the aggregation index was significantly positively associated with extreme heat events, while the mean shape index and largest patch index were significantly negatively associated with extreme heat events. Urban extreme heat events could be mitigated by increasing the compactness of urban center development, promoting boundary control of urban development, and controlling the size of individual construction land patches.

Key words: urban form, climate change, extreme heat, resilient city