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街谷空气悬浮颗粒物暴露数值模拟方法验证基准

A benchmark for numerical scheme validation of airborne particle exposure in street canyons.

机构信息

Department of Civil and Mechanical Engineering, University of Cassino and Southern Lazio, via Di Biasio 43, 03043, Cassino, Italy.

出版信息

Environ Sci Pollut Res Int. 2015 Feb;22(3):2051-63. doi: 10.1007/s11356-014-3491-6. Epub 2014 Aug 30.

Abstract

Measurements of particle concentrations and distributions in terms of number, surface area, and mass were performed simultaneously at eight sampling points within a symmetric street canyon of an Italian city. The aim was to obtain a useful benchmark for validation of wind tunnel experiments and numerical schemes: to this purpose, the influence of wind directions and speeds was considered. Particle number concentrations (PNCs) were higher on the leeward side than the windward side of the street canyon due to the wind vortex effect. Different vertical PNC profiles were observed between the two canyon sides depending on the wind direction and speed at roof level. A decrease in particle concentrations was observed with increasing rooftop wind speed, except for the coarse fraction indicating a possible particle resuspension due to the traffic and wind motion. This study confirms that particle concentration fields in urban street canyons are strongly influenced by traffic emissions and meteorological parameters, especially wind direction and speed.

摘要

在意大利某城市的一个对称街道峡谷内的八个采样点,同时进行了以数量、表面积和质量为单位的颗粒物浓度和分布的测量。目的是为风洞实验和数值方案提供有用的验证基准:为此,考虑了风向和风速的影响。由于风涡旋效应,街道峡谷背风侧的颗粒物数浓度(PNC)高于迎风侧。根据屋顶高度处的风向和风速,观察到两侧峡谷的垂直 PNC 分布不同。随着屋顶风速的增加,颗粒物浓度呈下降趋势,但粗颗粒分数除外,这表明由于交通和风力运动,可能存在颗粒再悬浮。本研究证实,城市街道峡谷中的颗粒物浓度场受交通排放和气象参数的强烈影响,尤其是风向和风速。

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