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Pedestrian level wind environment assessment around group of high-rise cross-shaped buildings: Effect of building shape separation and orientation

机译:高层十字形建筑群周围的行人风环境评估:建筑形状分隔和方向的影响

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摘要

Blockage of air circulation caused by the mutual sheltering effect of high-rise buildings in built-up areas in dense cities causes various health- and comfort-related problems. The combined effect of neighborhood geometry (e.g., re-entrant corners, wind incident angle, passage angle, and building separation) on wind flow at the pedestrian level is an active field of research. This study investigates the influence of the wind incident angle and passage width on the wind flow characteristics at the re-entrant corners of cross-shaped high-rise buildings. This study also examines the influence of stagnant zones and wake regions on ventilation potential and wind comfort around the case study arrangements at various wind incident directions. An investigation was performed from 16 wind directions using the standard k–ε turbulence model with revised closure coefficients. A wind tunnel experiment was conducted to validate the results, which revealed that wind circulation at re-entrant corners was substantially affected by the building orientations and separation. The wind catchment effect within the re-entrant corners and the sheltering effect of buildings at various wind incident directions and building separations are also discussed. Unstable vortices were formed in oblique wind directions; these vortices facilitate contaminant dispersion and wind comfort at re-entrant corners and near buildings.
机译:高层建筑在密集城市中高层建筑的相互遮挡作用引起的空气流通阻塞,导致各种与健康和舒适有关的问题。邻里几何形状(例如凹角,风入射角,通道角和建筑物间隔)对行人水平风速的综合影响是一个活跃的研究领域。本研究调查了风的入射角和通道宽度对十字形高层建筑的折返角处的风流特性的影响。本研究还研究了停滞区和尾流区对案例研究安排在各种风入射方向周围通风潜力和风舒适度的影响。使用标准k-ε湍流模型和修正的闭合系数,从16个风向进行了研究。进行了风洞实验以验证结果,该结果表明,折返角的风循环受建筑物的朝向和分隔影响很大。还讨论了折返角内的集水效应以及建筑物在不同风向和建筑物间隔下的遮挡作用。倾斜的风向形成不稳定的涡流。这些涡流有利于污染物进入角点和建筑物附近的扩散和风的舒适度。

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