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首页> 外文期刊>Journal of the air & waste management association >Three-Dimensional Modeling of Air Flow and Pollutant Dispersion in an Urban Street Canyon with Thermal Effects
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Three-Dimensional Modeling of Air Flow and Pollutant Dispersion in an Urban Street Canyon with Thermal Effects

机译:具有热效应的城市街道峡谷中空气流动和污染物扩散的三维建模

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摘要

Effects of excess ground and building temperatures on airflow and dispersion of pollutants in an urban street canyon with an aspect ratio of 0.8 and a length-to-width ratio of 3 were investigated numerically. Three-dimensional governing equations of mass, momentum, energy, and species were modeled using the RNG k-∈ turbulence model and Boussinesq approximation, which were solved using the finite volume method. Vehicle emissions were estimated from the measured traffic flow rates and modeled as banded line sources, with a street length and bandwidths equal to typical vehicle widths. Both measurements and simulations reveal that pollutant concentrations typically follow the traffic flow rate; they decline as the height increases and are higher on the leeward side than on the windward side. Three-dimensional simulations reveal that the vortex line, joining the centers of cross-sectional vortexes of the street canyon, meanders between street buildings and shifts toward the windward side when heating strength is increased. Thermal boundary layers are very thin. Entrainment of outside air increases, and pollutant concentration decreases with increasing heating condition. Also, traffic-produced turbulence enhances the turbulent kinetic energy and the mixing of temperature and admixtures in the canyon. Factors affecting the inaccuracy of the simulations are addressed.
机译:数值研究了纵横比为0.8,长宽比为3的城市街道峡谷中过量地面和建筑物温度对污染物流动和污染物扩散的影响。使用RNGk-ε湍流模型和Boussinesq逼近对质量,动量,能量和种类的三维控制方程进行建模,并使用有限体积法对其进行求解。根据测量的交通流量估算车辆排放,并将其建模为带状线源,街道长度和带宽等于典型车辆宽度。测量和模拟都表明,污染物浓度通常遵循交通流量。它们随着高度的增加而下降,在背风侧比在迎风侧更高。三维模拟显示,涡流线与街道峡谷的横截面涡流的中心相连,在街道建筑物之间蜿蜒,并在加热强度增加时向上风侧移动。热边界层非常薄。随着加热条件的增加,外部空气的夹带增加,污染物浓度降低。同样,交通产生的湍流增强了湍流动能以及峡谷中温度和掺混物的混合。解决了影响模拟不准确的因素。

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