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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Concentration and flow distributions in urban street canyons: wind tunnel and computational data
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Concentration and flow distributions in urban street canyons: wind tunnel and computational data

机译:城市街道峡谷的浓度和流量分布:风洞和计算数据

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The goal of this paper is to present bluff body flow and transport from steady point sources of pollutants, or chemical and biological agents in an idealized urban environment This paper includes ventilation behavior in different street canyon configurations. To evaluate dispersion in a model urban street canyon, a series of tests with various street canyon aspect ratios (B/H) are presented. Both open-country roughness and urban roughness cases are considered. The flow and dispersion of gases emitted by a point source located between two buildings inside an urban street canyon were determined by the prognostic model FLUENT using four different RANS turbulent closure approximations and in the model fire dynamics simulator using a large eddy simulation methodology. Calculations are compared against fluid modeling in the Industrial Meteorological Wind Tunnel at Colorado State University. A basic building shape, the Wind Engineering Research Field Laboratory building (WERFL) at Texas Tech University, was used for this study. The urban street canyon was represented by a 1:50 scale WERFL model surrounded by models of similar dimensions. These buildings were arranged in various symmetric configurations with different separation distances and different numbers of up- or downwind buildings. Measurements and calculations reveal the dispersion of gases within the urban environment are essentially unsteady, and they are not always well predicted by the use of steady-state prediction methodologies.
机译:本文的目的是在理想化的城市环境中显示来自污染物,化学或生物制剂的稳定点源的钝体流和运输。本文包括不同街道峡谷配​​置中的通风行为。为了评估模型街道峡谷中的色散,提出了一系列使用各种街道峡谷纵横比(B / H)的测试。同时考虑了开放国家粗糙度和城市粗糙度情况。由预测模型FLUENT使用四个不同的RANS湍流闭合近似值,并在模型火灾动力学仿真器中使用大型涡流仿真方法,确定了位于城市街道峡谷内两座建筑物之间的点源排放气体的流量和扩散。将计算结果与科罗拉多州立大学工业气象风洞中的流体模型进行了比较。这项研究使用了一种基本的建筑形状,即德克萨斯理工大学的风力工程研究野外实验室大楼(WERFL)。以1:50比例的WERFL模型代表城市街道峡谷,周围环绕着类似尺寸的模型。这些建筑物以不同的对称距离,不同的上风或下风建筑物数量对称布置。测量和计算表明,城市环境中的气体扩散基本上是不稳定的,使用稳态预测方法无法始终很好地预测它们。

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