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The Impact of Urban Form Configuration on the Urban Heat Island: The Case Study of Baghdad, Iraq

机译:城市形态配置对城市热岛的影响:巴格达,伊拉克的案例研究

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It is recognized that ambient air temperatures (T_a) inside urban cores are higher than that in their rural surroundings, forming what is known as the urban heat island (UHI) phenomenon. During the summer in hot and dry regions, the UHI intensity is significantly influenced by the extreme direct solar radiation and leads to outdoor thermal discomfort during the entire day. The present study aims to investigate the thermal performance of three different urban configurations and street geometries in the metropolitan city of Baghdad, Iraq: traditional compact, modern attached, and modern detached. To ensure that the urban configuration is the only factor for comparison, vegetation was excluded and materials for buildings and streets were unified in all examined study cases. The evaluation of the ambient air temperature (T_a), street surface temperature (T_s) inside the urban canyon, and mean radiant temperature (T_(mrt)) was conducted by utilizing the three-dimensional numerical software Envi-met 4.0. The three variables T_a, T_s, and T_(mrt) were measured at the center of the street in each urban configuration. The investigation of this study has provided a better understanding of the role of urban form configurations in forming the UHI that affect the microclimate in hot and dry regions, which has therefore helped to generate guidelines of urban design and planning practices for a better thermal performance in cities. In particular, the study has contributed to the validation of the impacts of urban canyons on the temperature variations in built environment.
机译:人们认识到城市内核内的环境空气温度(T_A)高于其农村环境中,形成所谓的城市热岛(UHI)现象。在炎热和干燥区域的夏天,紫外线强度受到极端直接的太阳辐射的显着影响,并导致整天室外热不适。本研究旨在调查伊拉克巴格达大都市城市三种不同城市配置和街道几何形状的热性能:传统紧凑型,现代附属,现代脱落。为确保城市配置是比较的唯一因素,排除了植被,在所有检查的研究案件中统一建筑物和街道的材料。通过利用三维数值软件Envi-Met 4.0,对城市峡谷内的环境空气温度(T_A),街道表面温度(T_S)进行评估,以及平均辐射温度(T_(MRT))。在每个城市配置的街道中心测量三个变量T_A,T_S和T_(MRT)。对本研究的调查提供了更好地了解城市形态配置在形成影响炎热和干燥地区的微气门的UHI方面的作用,因此有助于为城市设计和规划实践提供更好的热性能的指导城市。特别是,该研究有助于验证城市峡谷对建筑环境温度变化的影响。

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