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Thermal effects on vehicle emission dispersion in an urban street canyon

机译:热对城市街道峡谷中车辆排放扩散的影响

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The impact of the thermal effects on vehicle emission dispersion within street canyons is examined. The results show that heating from building wall surfaces and horizontal surfaces lead to strong buoyancy forces close to surfaces receiving direct solar radiation. This thermally induced flow is combined with mechanically induced flows formed in the canyon where there is no solar heating, and affects the transport of pollutants from the canyon to the layer aloft. The relative influence of each of these effects can be estimates by Gr/Re~2. When the windward wall is warmer than the air, an upward buoyancy flux opposes the downward advection flux along the wall; if Gr/Re~2 > 2, the flow structure is divided into two counter-rotating cells, and pollutants are accumulated on the windward side of the canyon. When the horizontal surface is heated, and Gr/Re~2 > 4, the flow structure is divided into two counter-rotating cells by upward buoyancy flux. Pollutants are accumulated at the windward side of the canyon. When the leeward side is heated, the buoyancy flux adds to the upward advection flux along the wall strengthening the original vortex and pollutant effects of transport compared to the isothermal case.
机译:研究了热效应对街道峡谷内车辆排放扩散的影响。结果表明,建筑物墙壁表面和水平表面的热量导致靠近直接接受太阳辐射的表面的强烈浮力。这种热感应流与在没有太阳加热的峡谷中形成的机械感应流相结合,并影响污染物从峡谷到高空层的传输。这些影响的相对影响可以通过Gr / Re〜2估算。当迎风壁的温度比空气高时,向上的浮力通量与沿壁的向下的对流通量相对。如果Gr / Re〜2> 2,则流动结构被分为两个反向旋转的小室,污染物积聚在峡谷的上风侧。当水平面被加热并且Gr / Re〜2> 4时,流动结构被向上的浮力通量分成两个反向旋转的小室。污染物聚集在峡谷的迎风面。当背风侧被加热时,与等温情况相比,浮力通量增加了沿壁的向上对流通量,从而增强了原始涡流和污染物的运输效应。

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