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持续的城市高温。

Persistent urban heat.

作者信息

Li Dan, Wang Linying, Liao Weilin, Sun Ting, Katul Gabriel, Bou-Zeid Elie, Maronga Björn

机构信息

Department of Earth and Environment, Boston University, Boston, MA, USA.

Department of Mechanical Engineering, Boston University, Boston, MA, USA.

出版信息

Sci Adv. 2024 Apr 12;10(15):eadj7398. doi: 10.1126/sciadv.adj7398. Epub 2024 Apr 10.

Abstract

Urban surface and near-surface air temperatures are known to be often higher than their rural counterparts, a phenomenon now labeled as the urban heat island effect. However, whether the elevated urban temperatures are more persistent than rural temperatures at timescales commensurate to heat waves has not been addressed despite its importance for human health. Combining numerical simulations by a global climate model with a surface energy balance theory, it is demonstrated here that urban surface and near-surface air temperatures are significantly more persistent than their rural counterparts in cities dominated by impervious materials with large thermal inertia. Further use of these materials will result in even stronger urban temperature persistence, especially for tropical cities. The present findings help pinpoint mitigation strategies that can simultaneously ameliorate the larger magnitude and stronger persistence of urban temperatures.

摘要

众所周知,城市地表和近地表气温往往高于农村地区,这一现象如今被称为城市热岛效应。然而,尽管城市气温升高对人类健康很重要,但在与热浪相当的时间尺度上,城市气温升高是否比农村气温更持久,这一问题尚未得到解决。通过将全球气候模型的数值模拟与地表能量平衡理论相结合,本文证明,在以具有大热惯性的不透水材料为主的城市中,城市地表和近地表气温比农村地区的气温具有显著更强的持续性。进一步使用这些材料将导致城市温度持续性更强,特别是对于热带城市而言。目前的研究结果有助于确定能够同时缓解城市气温更高幅度和更强持续性的缓解策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/984c/11006209/adadfce848f5/sciadv.adj7398-f1.jpg

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