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Scalar Fluxes Near a Tall Building in an Aligned Array of Rectangular Buildings

机译:对齐的矩形建筑物阵列中的高层建筑物附近的标量通量

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摘要

Scalar dispersion from ground-level sources in arrays of buildings is investigated using wind-tunnel measurements and large-eddy simulation (LES). An array of uniform-height buildings of equal dimensions and an array with an additional single tall building (wind tunnel) or a periodically repeated tall building (LES) are considered. The buildings in the array are aligned and form long streets. The sensitivity of the dispersion pattern to small changes in wind direction is demonstrated. Vertical scalar fluxes are decomposed into the advective and turbulent parts and the influences of wind direction and of the presence of the tall building on the scalar flux components are evaluated. In the uniform-height array turbulent scalar fluxes are dominant, whereas the tall building produces an increase of the magnitude of advective scalar fluxes that yields the largest component. The presence of the tall building causes either an increase or a decrease to the total vertical scalar flux depending on the position of the source with respect to the tall building. The results of the simulations can be used to develop parametrizations for street-canyon dispersion models and enhance their capabilities in areas with tall buildings.
机译:使用风洞测量和大涡模拟(LES)研究了建筑物阵列中来自地面源的标量色散。考虑了等高的等高建筑物的阵列以及具有附加的单个高层建筑物(风洞)或周期性重复的高层建筑物(LES)的阵列。阵列中的建筑物对齐并形成漫长的街道。证明了分散图案对风向的微小变化的敏感性。垂直标量通量分解为对流和湍流部分,并评估了风向和高层建筑物的存在对标量通量分量的影响。在均匀高度阵列中,湍流标量通量占主导地位,而高层建筑则产生对流标量通量,从而产生最大的分量。高层建筑的存在取决于源相对于高层建筑的位置,导致总垂直标量通量增加或减少。仿真结果可用于开发街道峡谷扩散模型的参数化,并增强其在高层建筑区域中的功能。

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