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CFD simulation of flow in a long street canyon under a perpendicular wind direction: Evaluation of three computational settings

机译:垂直风向下长街峡谷中水流的CFD模拟:三种计算设置的评估

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A street canyon is an important platform for the understanding of local atmospheric flow and other related processes in the built environment. Many previous studies focused on long street canyons under a perpendicular wind direction, as they represent the worst street canyon microclimate, such as stagnation of wind and accumulation of pollutants. While CFD simulations were widely applied to investigate atmospheric processes in street canyons, appropriate computational settings are important factors influencing the predictive reliability. A non-exhaustive literature review of CFD studies on atmospheric processes in long street canyons indicates an arbitrary selection of three important computational settings, namely computational domain configuration, domain dimensions and inflow boundary conditions. Based on previous water tunnel experimental data for street canyons with aspect ratio equal to 0.5, 1.0 and 2.0, this study evaluates the influence of the three computational settings on CFD prediction of isothermal flow field inside the street canyons. Flow field inside an urban street canyon cannot be reasonably predicted using an isolated street canyon included in a conventional computational domain, which, however, can be well predicted using a T-shape computational domain where a street canyon is connected to a free flow layer above the canyon. A T-shape domain with the upstream length, downstream length and height above a street canyon all equal to the height of the street canyon is appropriate when considering both computational cost and predictive accuracy. It is reasonable to use uniform inflow boundary conditions to represent the free layer above street canyons. (C) 2016 Elsevier Ltd. All rights reserved.
机译:街道峡谷是了解建筑环境中局部大气流量和其他相关过程的重要平台。先前的许多研究都集中在垂直风向下的长街峡谷,因为它们代表了最差的街峡谷微气候,例如风的停滞和污染物的积累。尽管CFD模拟被广泛应用于调查街道峡谷中的大气过程,但适当的计算设置是影响预测可靠性的重要因素。对长街峡谷中的大气过程进行CFD研究的非详尽文献综述指出,可以任意选择三个重要的计算设置,即计算域配置,域维和流入边界条件。基于以前的纵横比分别为0.5、1.0和2.0的峡谷的水隧道实验数据,本研究评估了三种计算设置对街道峡谷内等温流场CFD预测的影响。无法使用常规计算域中包含的孤立街道峡谷来合理地预测城市街道峡谷内的流场,但是可以使用T形计算域(其中街道峡谷连接至上方的自由流动层)很好地预测城市街道峡谷内的流场峡谷。考虑到计算成本和预测精度时,T型域的上游长度,下游长度和街道峡谷上方的高度均应等于街道峡谷的高度。使用统一的流入边界条件来表示街道峡谷上方的自由层是合理的。 (C)2016 Elsevier Ltd.保留所有权利。

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