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Measurements of Turbulence and Dispersion in Three Idealized Urban Canopies with Different Aspect Ratios and Comparisons with a Gaussian Plume Model

机译:三种不同长宽比的理想化城市雨棚内湍流和弥散的测量以及与高斯羽流模型的比较

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摘要

Water-tunnel measurements of velocity, turbulence and scalar concentration for three model urban canopies with aspect ratios A r of building height-to-width of 0.25, 1 and 3 are presented. The measurements for the canopies with A r = 1 and 3 are new, while the measurements for A r = 0.25 were previously published. A passive scalar was continuously released from a near-ground point source, and the concentration was measured at several distances from the source and at different heights above the ground. Plume spreads, concentration and distance from the source were non-dimensionalized using length, time and velocity scales reflecting the geometry of the buildings. The scaling collapses the data for all aspect ratios and is valid when the vertical extent of the plume is smaller than the canopy height. The observed plume spreads are compared with analytical relations, which predict linear growth in both transverse and vertical directions. The observed mean concentration is compared with a Gaussian dispersion model that predicts a −2 power-law decay with distance from the source.
机译:给出了三个模型城市雨棚的水隧道速度,湍流和标量浓度的测量结果,其建筑物的高宽比A r为0.25、1和3。 A r = 1和3的顶篷的测量值是新的,而A r = 0.25的测量值先前已发布。从近地面点源连续释放无源标量,并在距该源数个距离和地面以上不同高度处测量浓度。使用反映建筑物几何形状的长度,时间和速度标度,未定义羽状扩散,浓度和距源的距离。缩放会折叠所有纵横比的数据,并且在羽流的垂直范围小于顶篷高度时有效。将观察到的羽状散布与分析关系进行比较,分析关系预测横向和垂直方向的线性增长。将观测到的平均浓度与高斯色散模型进行比较,该模型预测-2幂律随距源的距离而衰减。

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