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CFD simulation of flow and dispersion around an isolated building : effect of inhomogeneous ABL and near-wall treatment

机译:隔离建筑物周围流动和分散的CFD模拟:不均匀ABL和近墙处理的影响

摘要

This paper presents a study of the effect of the inhomogeneous atmospheric boundary layer (ABL) and near-wall treatment on a computational fluid dynamics (CFD) simulation of the flow and dispersion around an isolated building. Based on a revised k-. e{open} model (MMK), the effect of the inhomogeneous ABL is studied by comparing several sets of inhomogeneous inlet conditions with a homogeneous one, while the roughness-adapted standard wall functions and two-layer model are compared to examine the effect of the near-wall treatment of rough ground. Wind tunnel experimental data from previous investigations are used to validate the numerical simulations. The inhomogeneous ABL has a significant effect on the prediction of the flow and dispersion fields, depending on the percentage deviation of the incident from the inlet conditions. A decreased incident k profile results in a longer reattachment length on the roof and a larger recirculation region in the wake, which in turn produce decreased and increased nondimensional velocity and concentration fields, respectively. An increased incident U profile enlarges the reattachment lengths and raises the k field, which has a similar effect on the nondimensional velocity and concentration fields as decreased k. It is observed that the use of the two-layer model to solve the near-wall viscous sublayer clearly improves the prediction of flow and dispersion, depending on the role of the low-Reynolds-number effect of the near-wall region on the entire wall-bounded turbulent flow.
机译:本文介绍了非均匀大气边界层(ABL)和近壁处理对隔离建筑物周围的流动和扩散的计算流体力学(CFD)模拟的影响的研究。基于修改后的k-。在e {open}模型(MMK)中,通过将几组不均匀的进气条件与一个均匀的进气条件进行比较,研究了不均匀的ABL的影响,同时比较了适应粗糙度的标准壁函数和两层模型以检验粗糙地面的近壁处理。来自先前研究的风洞实验数据用于验证数值模拟。不均匀的ABL对流场和弥散场的预测有重要影响,这取决于入射条件与入口条件的百分比偏差。减小的入射k轮廓会导致屋顶上的重新附着长度更长,尾流中的回流区域更大,从而分别产生减小和增加的无量纲速度场和集中场。入射U轮廓的增加会增加重新连接的长度,并会增加k场,这与减小k时对无量纲速度和浓度场的影响类似。观察到,根据近壁区域的低雷诺数效应对整个壁面的作用,使用两层模型求解近壁粘性子层可以明显改善流动和分散的预测。壁面湍流。

著录项

  • 作者

    Ai ZT; Mak CM;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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