Aerodynamic effect of overhang on a turbulent flow field within a two-dimensional street canyon

M. Mohamad, A. Hagishima, N. Ikegaya, J. Tanimoto, A. Omar
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引用次数: 4

Abstract

This paper reports the results of flow field analysis within and above a two-dimensional street canyon with various overhang lengths using large-eddy simulation (LES). Simulations were conducted for a constant canyon aspect ratio of W/H = 3, where W is the street width and H is the building height. Three different overhang lengths were simulated with P = 0H, 0.5H, and 1H in order to derive the mean and instantaneous flow characteristics. The results are compared with wind tunnel experiments for validation. The LES results of the mean flow with the P = 0H condition agree fairly well with the wind tunnel data. However, profiles of the standard deviation for the streamwise and vertical velocity components show large discrepancies at all measured locations. In addition, an increase in overhang length on both building facades significantly modifies the in-canyon flow pattern by limiting the penetration of the bulk flow into the canyon layer.
悬挑对二维街道峡谷湍流流场的气动影响
本文报道了用大涡模拟(large-eddy simulation, LES)方法对不同悬伸长度的二维街道峡谷内部和上方流场进行分析的结果。以恒定峡谷宽高比W/H = 3为条件进行模拟,其中W为街道宽度,H为建筑物高度。分别在P = 0H、0.5H和1H下模拟三种不同的悬垂长度,得出平均和瞬时流量特性。并与风洞实验结果进行了对比验证。在P = 0H条件下,平均流场的LES计算结果与风洞数据吻合较好。然而,在所有测量地点,流向和垂直速度分量的标准偏差剖面显示出很大的差异。此外,两个建筑立面上悬挑长度的增加,通过限制大量水流渗透到峡谷层,显著地改变了峡谷内的流动模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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