Evaluation of Local Wind Environment in a Dense Building Block Based on Exceedance Probability Analysis Method

Zhen Bu, Yan Lin
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Abstract

This paper is devoted to study wind environment in a dense urban areas from the ventilation perspective. In order to take the stochastic characteristics of city wind into consideration, the exceedance probability analysis method was applied using air change rate as the index. The air change rate in the target domain was first obtained using CFD simulation for 16 wind directions and each building pattern. The CFD results demonstrated that airflow fields in the target domain were complicated and the air change rates depends greatly on wind direction. However, there is no direct correlation between street width and air change rate. The exceedance probability distributions were further calculated using the wind statistical data in Tokyo and used to analysis the influences of model orientation and street width. The results indicated that both factors affects the ventilation performance in the target domain significantly. The proposed evaluating approach is useful and effective for the urban ventilation design.
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基于超越概率分析法的密集建筑局部风环境评价
本文从通风角度研究了人口密集城市地区的风环境。为了考虑城市风的随机特性,采用以换气率为指标的超越概率分析方法。首先利用CFD模拟得到了16个风向和各建筑格局下目标区域的空气变化率。计算结果表明,目标区域内的气流场较为复杂,气流变化率与风向的关系较大。然而,街道宽度与空气变化率之间没有直接的相关性。利用东京地区的风统计数据进一步计算了超过概率分布,并分析了模式朝向和街道宽度的影响。结果表明,这两个因素对目标区域的通风性能影响显著。所提出的评价方法对城市通风设计具有实用和有效的指导意义。
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