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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 >Consistency of mean wind speed in pedestrian wind environment analyses: Mathematical consideration and a case study using large-eddy simulation
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Consistency of mean wind speed in pedestrian wind environment analyses: Mathematical consideration and a case study using large-eddy simulation

机译:行人风环境中平均风速的一致性分析:数学考虑与大涡模拟的数学考虑因素及案例研究

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摘要

AbstractWhen analyzing pedestrian wind environments, the evaluated mean wind speed sometimes varies in its definition depending on the method used, such as in wind tunnel experiments (WTEs) and in computational fluid dynamics (CFD) simulations. First, this study defined three types of mean wind speed (mean-vector speed, mean speed, and effective speed) and investigated their interrelations mathematically. Second, discrepancies between the three mean wind speeds were predicted quantitatively by conducting a large-eddy simulation of flow around a single building model in an urban boundary layer. Near the ground surface, the differences between the mean wind speeds became larger in the recirculation flow near the building's windward corners and in its wake. However, in the region where the maximum wind speeds occurred, all the mean wind speeds were similar. Finally, we presented a method to estimate mean speed, which is commonly evaluated in WTEs, using information that can be obtained from CFD using turbulence models based on Reynolds-averaged Navier–Stokes equations. By modeling the probability distribution of the instantaneous velocity in a multivariate Gaussian distribution, we demonstrated its ability to estimate mean speed with high accuracy.Highlights
机译:<![CDATA [ 抽象 在分析行人风环境时,评估的均值有时根据所使用的方法而变化,如此如风隧道实验(WTE)和计算流体动力学(CFD)模拟。首先,本研究定义了三种类型的平均风速(平均矢量速度,平均速度,有效速度),并在数学上调查它们的相互关系。其次,通过在城市边界层中的单个建筑模型周围进行流动的大涡流模拟来定量地预测三种平均风速之间的差异。在地面附近,平均风速之间的差异在建筑物的迎风角附近的再循环流动中变得更大。然而,在发生最大风速的区域中,所有平均风速都是相似的。最后,我们介绍了一种估计平均速度的方法,该方法通常在WTE中评估,使用基于Reynolds平均的Navier-Stokes方程的湍流模型从CFD获得的信息。通过在多元高斯分布中建模瞬时速度的概率分布,我们证明了其具有高精度估计平均速度的能力。 < CE:抽象XMLNS:CE =“http://www.elsevier.com/xml/common/dtd”xmlns =“http://www.elsevier.com/xml/ja/dtd”class =“author-fighlights” XML:lang =“en”id =“abs0015”视图=“全部”> 突出显示

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