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Large-Eddy Simulation for the Mechanism of Pollutant Removal from a Two-Dimensional Street Canyon

机译:二维街道峡谷中污染物去除机理的大涡模拟

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摘要

Large-eddy simulation (LES) is conducted to investigate the mechanism of pollutant removal from a two-dimensional street canyon with a building-height to street-width (aspect) ratio of 1. A pollutant is released as a ground-level line source at the centre of the canyon floor. The mean velocities, turbulent fluctuations, and mean pollutant concentration estimated by LES are in good agreement with those obtained by wind-tunnel experiments. Pollutant removal from the canyon is mainly determined by turbulent motions, except in the adjacent area to the windward wall. The turbulent motions are composed of small vortices and small-scale coherent structures of low-momentum fluid generated close to the plane of the roof. Although both small vortices and small-scale coherent structures affect pollutant removal, the pollutant is largely emitted from the canyon by ejection of low-momentum fluid when the small-scale coherent structures appear just above the canyon where the pollutant is retained. Large-scale coherent structures also develop above the canyon, but they do not always affect pollutant removal.
机译:进行大涡模拟(LES),以研究建筑物高度与街道宽度(纵横比)为1的二维街道峡谷中污染物的清除机理。污染物被释放为地面线源在峡谷底的中心。 LES估计的平均速度,湍流涨落和平均污染物浓度与风洞实验获得的结果一致。从峡谷中去除污染物主要取决于湍流运动,除了在迎风壁附近。湍流由小的涡旋和靠近屋顶平面产生的低动量流体的小规模连贯结构组成。尽管小涡旋和小规模的连贯结构都会影响污染物的去除,但是当小规模的连贯结构出现在保留污染物的峡谷上方时,污染物会通过喷射低动力流体从峡谷中大量排放。峡谷上方也形成了大规模的连贯结构,但它们并不总是影响污染物的去除。

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