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Impact of height and shape of building roof on air quality in urban street canyons

机译:建筑屋顶的高度和形状对城市街道峡谷空气质量的影响

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A building's roof shape and roof height play an important role in determining pollutant concentrations from vehicle emissions and its complex flow patterns within urban street canyons. The impact of the roof shape and height on wind flow and dispersion of gaseous pollutants from vehicle exhaust within urban canyons were investigated numerically using a Computational Fluid Dynamics (CFD) model. Two-dimensional flow and dispersion of gaseous pollutants were analyzed using standard K-e turbulence model, which was numerically solved based on Reynolds Averaged Navier-Stokes (RANS) equations. The diffusion fields in the urban canyons were examined with three roof heights {ZhJH = 0.17, 0.33 and 0.5) and five roof shapes: (1) flat-shaped roof, (2) slanted-shaped roof, (3) downwind wedge-shaped roof, (4) upwind wedge-shaped roof, and (5) trapezoid-shaped roof. The numerical model was validated against the wind tunnels results in order to optimize the turbulence model. The numerical simulations agreed reasonably with the wind tunnel results. The results obtained indicated that the pollutant concentration increased as the roof height decreases. It also decreased with the slanted and trapezoid-shaped roofs but increased with the flat-shaped roof. The pollutant concentration distributions simulated in the present work, indicated that the variability of the roof shapes and roof heights of the buildings are important factors for estimating air quality within urban canyons.
机译:建筑物的屋顶形状和屋顶高度在确定车辆排放物及其在城市街道峡谷内复杂的流动模式中的污染物浓度方面起着重要作用。使用计算流体动力学(CFD)模型,对屋顶形状和高度对风速的影响以及城市峡谷中汽车尾气中气态污染物的扩散进行了数值研究。使用标准K-e湍流模型分析了气态污染物的二维流动和扩散,该模型基于Reynolds平均Navier-Stokes(RANS)方程进行了数值求解。用三个屋顶高度(ZhJH = 0.17、0.33和0.5)和五个屋顶形状检查了城市峡谷中的扩散场:(1)平屋顶,(2)倾斜屋顶,(3)顺风楔形屋顶,(4)迎风楔形屋顶和(5)梯形屋顶。针对风洞结果对数值模型进行了验证,以优化湍流模型。数值模拟与风洞结果基本吻合。获得的结果表明,污染物浓度随着屋顶高度的降低而增加。倾斜的和梯形的屋顶也减少,平坦的屋顶增加。目前工作中模拟的污染物浓度分布表明,建筑物的屋顶形状和屋顶高度的可变性是估计城市峡谷内空气质量的重要因素。

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