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Impacts of form and design policies on urban microclimate: Assessment of zoning and design guideline choices in urban redevelopment projects

机译:城市小气候形式和设计政策的影响:城市重建项目中分区与设计指导选择的评估

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Urban form significantly impacts thermal conditions at the microscale. This research aims to understand how existing zoning regulations that prescribe urban form affect the microclimate of densely built redeveloped commercial and mixed-use urban areas. ENVI-met was used to simulate diurnal microclimatic conditions of two former indoor shopping malls in the Denver metropolitan area that were converted to walkable urban outdoor centers in the early 2000s - the 29th street Mall in Boulder, CO and Belmar in Lakewood, CO. Simulations were conducted for a typical summer day (June 29, 2015) and validated through on-site air temperature observations. To compare the impact of urban form on microclimate at both sites, four policy scenarios were developed to apply the hypothetical policy-driven morphology of one site to the other by changing building height, tree density, street direction, and a combination of the three factors. The combined scenario showed the largest differences in air temperature to the base case (up to 2.0 degrees C), which is in the order of magnitude of the RMSE (1.2 degrees C-2.4 degrees C). Site configuration influenced air temperature and wind speed creating hyperlocal cool and warm pockets. Mean radiant temperature (MRT) varied the most between the scenarios with differences of up to 15.0 degrees C due to tall buildings and increased shading. Urban form policies of Belmar contributed to more effective heat mitigation, particularly with respect to MRT. Findings from this empirical work demonstrate the importance of design guidelines and zoning to achieve desired microclimate outcomes and highlight the potential of planning policies to create climate-sensitive urban forms.
机译:城市形态显着影响微观尺寸的热条件。本研究旨在了解现有的分区法规,这些规定规定规定城市形态的细节对重新开发的商业和混合使用城市地区密集的微气密。 Envi-Met用于模拟丹佛大都会区两名前室内商场的日昼夜微跨度条件,该地区于2000年代初被转换为可行的城市户外中心 - 第29街商城在博尔德,CO和Lakewood,Co的Co。模拟是在典型的夏日(2015年6月29日)进行并通过现场空气温度观察进行了验证。为了比较城市形态对两个站点的微气门的影响,通过改变建筑物高度,树密度,街道方向和三个因素的组合来制定四种政策方案来应用一个站点的假设政策驱动的形态。 。综合情景显示出空气温度的最大差异(高达2.0摄氏度),其呈RMSE的大小(1.2度C-2.4摄氏度)。站点配置影响空气温度和风速,创造过腔冷却和暖袋。平均辐射温度(MRT)由于高层建筑而差异多达15.0摄氏度,并且增加着阴影。 Belmar的城市形式政策有助于更有效的热缓解,特别是关于MRT的效率。从这个实证工作中的调查结果表明了设计指导和分区实现所需的微气候结果,并突出规划政策的潜力,以创造气候敏感的城市形式。

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