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Three-dimensional pollutant concentration dispersion of a vehicular exhaust plume in the real atmosphere

机译:真实大气中车辆尾气烟羽的三维污染物浓度弥散

摘要

The pollutant dispersion process from the vehicular exhaust plume has a direct impact on human health, particularly on vehicle drivers and passengers, bicyclists, motorcyclists, pedestrians and people working nearby. A three-dimensional vehicular pollutant dispersion numerical model was developed based on the Reynolds-averaged Navier-Stokes equations coupled with a k-ε turbulence model to simulate the initial pollutant dispersion process of carbon monoxide, CO, from a vehicular exhaust plume in the real atmospheric environment. Since the ambient wind direction and velocity are stochastic and uncontrollable in the real atmospheric environment, a wind-direction-frequency- weighted (WDFW) approach was used to obtain the real pollutant concentration dispersion along with the development of the vehicular exhaust plume. Within the specified sampling period, the ambient windflow conditions are transformed into the corresponding frequencies of wind directions and averaged magnitudes of wind velocities from directions N, E, S or W. Good agreement between the calculated and measured data for two diesel-fuelled vehicles indicates that with the WDFW approach the initial dispersion of pollutant concentration from a vehicular exhaust plume in the real atmospheric environment can be truly reflected. The present study shows that the dispersion process in the near region for the relative concentration of CO, from RC=0.1 (or 10%) to 1 (or 100%), is less influenced by the ambient wind velocity than by the vehicular exhaust velocity, but it is vice versa in the far region from RC=0 (or 0%) to 0.1 (or 10%). It implies that the effect of vehicular exhaust exit velocity on the dispersion process is more pronounced than that of ambient wind velocity at the vicinity of the exhaust tailpipe exit, while the effect of ambient wind velocity gradually shows a significant role for the dispersion process along with the development of a vehicular exhaust plume.
机译:车辆尾气中污染物的扩散过程直接影响人体健康,特别是对车辆驾驶员和乘客,骑自行车的人,摩托车手,行人和附近工作的人。基于雷诺平均Navier-Stokes方程并结合k-ε湍流模型,建立了三维汽车污染物扩散数值模型,以模拟真实汽车尾气中一氧化碳CO的初始扩散过程。大气环境。由于在实际的大气环境中环境风的方向和速度是随机的且不可控制的,因此随着车辆尾气羽流的发展,采用了风向频率加权(WDFW)的方法来获得实际的污染物浓度分散。在指定的采样周期内,周围的气流条件被转换为相应的风向频率和来自N,E,S或W方向的平均风速。两个柴油车辆的计算数据与实测数据之间的良好一致性表明通过WDFW方法,可以真正反映出实际大气环境中车辆尾气中污染物浓度的初始分布。本研究表明,相对于CO的相对浓度,从RC = 0.1(或10%)到1(或100%),在附近区域的分散过程受环境风速的影响比受车辆排气速度的影响小。 ,但从RC = 0(或0%)到0.1(或10%)的较远区域反之亦然。这暗示着车辆排气出口速度对分散过程的影响要比排气尾管出口附近的环境风速的影响更为显着,而环境风速的影响逐渐显示出对分散过程的重要作用。车辆尾气羽流的发展。

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