城市几何与室外热舒适在城市热岛缓解中的相关性——综述

IF 0.7 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
M. D. Malcoti, Hina Zia, C. Kabre
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引用次数: 0

摘要

UHIs对环境和能源的影响是众所周知的,但它们在加剧人口热应激方面的重要性直到最近才被认识到。规划人员、卫生管理人员和公共行政人员现在优先考虑预防全民健康保险。城市几何形状、材料饰面、绿色和蓝色基础设施是缓解城市热岛问题的突出选择。本文以城市几何为关键参数,对城市热岛的研究进行了综述。该报告还指出了信息差距,并强调了在印度主要大都市中心进行这类研究的必要性。预期的研究将有助于公共卫生规划者和管理者。方法:作者收集了大量关于城市热岛和相关概念的文献。结果的目的是了解城市几何参数与城市热岛强度的相关性,以及它如何影响室外热舒适。从2000年到2020年,在各种电子数据库中搜索符合室外热舒适标准和城市规划特征(城市几何形状)作为缓解策略的出版物。摘要:城市热岛对人体舒适状况的影响不容忽视。在城市规划的初始阶段,通过城市几何参数采取适当的规划措施,一定会产生令人鼓舞的效果,降低城市热岛强度,改善室外热舒适条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relevance of Urban Geometry and Outdoor Thermal Comfort in Urban Heat Island Mitigation – A Review
UHIs’ environmental and energy implications are well-known, but their significance in aggravating heat stress in populations is only recently being recognised. Planners, health managers, and public administrators now prioritise UHI prevention. Urban geometry, material finishes, and green and blue infrastructure are prominent UHI mitigation options. This paper examines urban geometry as a key parameter and reviews UHI research. This report also identifies information gaps and emphasizes the need for this type of research in key Indian metropolitan centers. The anticipated study will help public health planners and administrators. Methods: Authors compiled extensive literature on UHI and related concepts. The outcome intent was to understand the relevance of urban geometry parameters in UHI intensity and how it impacts outdoor thermal comfort. Various electronic databases were searched for publications meeting the criteria of outdoor thermal comfort and urban planning characters (urban geometry) as a mitigation strategy, ranging from 2000 to 2020. Summary: The impact of UHI on human comfort conditions cannot be ignored. Appropriate planning measures at the initial stages of city planning via urban geometry parameters can certainly yield encouraging results to reduce the intensity of UHI and improve outdoor thermal comfort conditions.
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来源期刊
Journal of Climate Change
Journal of Climate Change METEOROLOGY & ATMOSPHERIC SCIENCES-
自引率
16.70%
发文量
18
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