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首页> 外文期刊>Building and Environment >New inflow boundary conditions for modeling twisted wind profiles in CFD simulation for evaluating the pedestrian-level wind field near an isolated building
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New inflow boundary conditions for modeling twisted wind profiles in CFD simulation for evaluating the pedestrian-level wind field near an isolated building

机译:在CFD模拟中模拟扭曲风廓线的新入流边界条件,用于评估隔离建筑物附近的行人风场

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摘要

The hilly topography of Hong Kong influences oncoming winds and gradually changes their wind directions along the profiles' height. The vertical variation in wind directions, or the twist effect, significantly influences the Pedestrian Level Wind (PLW) field in urban areas of Hong Kong, thus it is a topic demanding systematic investigations. In this study, a new set of inflow boundary conditions are proposed to model twisted wind flows in Computational Fluid Dynamic (CFD) simulations. The new inflow boundary condition derived based on the horizontal homogeneous assumption, specifies a vertical profile of lateral wind speeds at the inlet boundary to sustain the twist effect in the empty computational domain. The proposed boundary conditions are used to simulate the PLW fields near three isolated buildings with different Height-to-Width ratio using two CFD codes; OpenFOAM, and FLUENT. The results reveal that OpenFOAM is more reliable in simulating PLW fields in twisted wind flows using the new set of boundary conditions. The three-dimensional flow field provided by the OpenFOAM simulation shows sparse streamlines downstream the buildings, indicating lack of organized eddies in the building far wake, which negatively affects the dispersion of air pollutants in twisted winds.
机译:香港的丘陵地形会影响到来的风,并沿剖面高度逐渐改变风向。风向的垂直变化或扭曲效应极大地影响了香港市区的行人风向,因此这是一个需要系统研究的话题。在这项研究中,提出了一组新的流入边界条件,以在计算流体动力学(CFD)模拟中对扭曲的风流进行建模。基于水平同质假设得出的新的入流边界条件指定了入口边界处横向风速的垂直分布,以在空的计算域中维持扭曲效应。所提出的边界条件用于通过两个CFD代码模拟三座不同高高比的隔离建筑物附近的PLW场; OpenFOAM和FLUENT。结果表明,OpenFOAM在使用新的边界条件集模拟扭曲风流中的PLW场时更加可靠。 OpenFOAM仿真提供的三维流场显示,建筑物下游的流线稀疏,表明在建筑物远处缺乏有组织的涡流,这会对扭曲风中的空气污染物扩散产生负面影响。

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