Three-dimensional landscape features impact on urban surface wind velocity during a heatwave: Relative contribution and marginal effect

IF 6 2区 工程技术 Q1 ENVIRONMENTAL SCIENCES Urban Climate Pub Date : 2024-12-02 DOI:10.1016/j.uclim.2024.102227
Junda Huang, Yuncai Wang, Mangmang Wang
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Abstract

Accelerating the flow of surface air through urban areas at a faster rate is one of the important nature-based solutions for reducing the threat of urban overheating. Previous studies have focused on analyzing the correlation between two-dimensional landscape patterns and sky conditions. However, the relative contribution of three-dimensional (3D) landscape features to urban wind and the marginal effect during a heatwave remain unclear. In this study, the Weather Research and Forecasting (WRF) model was used to simulate the development of the wind field during heat events with weak synoptic wind. The regions were clustered based on land cover characteristics. The impact of 3D landscape features on the wind velocities in each cluster was further explored. Results revealed that ventilation corridors predominantly occurred in the morning, dissipating by midday. Diurnal wind velocities were primarily influenced by Forest Canopy Density (FCD), Building Congestion (BC), and Landscape Shape. Specifically, in suburban areas, the negative effect on surface wind velocities stabilized when BC exceeded 0.12. This phenomenon also occurred when the FCDs were higher than 0.75. Based on these findings, the study proposes urban planning strategies aimed at enhancing natural ventilation in cities, assisting planners in developing sustainable cities with cool winds.
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三维景观特征对热浪期间城市地面风速的影响:相对贡献与边际效应
以更快的速度加速地表空气在城市地区的流动是减少城市过热威胁的重要的基于自然的解决方案之一。以前的研究主要集中在分析二维景观格局和天空条件之间的相关性。然而,三维景观特征对城市风的相对贡献和热浪期间的边际效应尚不清楚。本文采用天气研究与预报(WRF)模式模拟了弱天气风条件下高温事件的风场发展过程。基于土地覆盖特征对区域进行聚类。进一步探讨了三维景观特征对各组团风速的影响。结果显示,通风走廊主要出现在早晨,中午消散。日风速主要受林冠密度(FCD)、建筑拥堵(BC)和景观形态的影响。其中,在郊区,当BC超过0.12时,对地面风速的负面影响趋于稳定。当FCDs大于0.75时,也会出现这种现象。基于这些发现,该研究提出了旨在加强城市自然通风的城市规划策略,帮助规划者开发具有凉爽风的可持续城市。
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来源期刊
Urban Climate
Urban Climate Social Sciences-Urban Studies
CiteScore
9.70
自引率
9.40%
发文量
286
期刊介绍: Urban Climate serves the scientific and decision making communities with the publication of research on theory, science and applications relevant to understanding urban climatic conditions and change in relation to their geography and to demographic, socioeconomic, institutional, technological and environmental dynamics and global change. Targeted towards both disciplinary and interdisciplinary audiences, this journal publishes original research papers, comprehensive review articles, book reviews, and short communications on topics including, but not limited to, the following: Urban meteorology and climate[...] Urban environmental pollution[...] Adaptation to global change[...] Urban economic and social issues[...] Research Approaches[...]
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