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Study on micro-atmospheric environment by coupling large eddy simulation with mesoscale model

机译:大涡模拟与中尺度模型耦合研究微大气环境

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This paper investigates wind field and traffic pollutant dispersion at street level in a local urban area. A coupling method is employed that the time-varying boundary values of velocity and temperature at the local urban area are provided by the Weather Research and Forecasting (WRF) mesoscale model which computes the atmospheric flow over the entire city while the atmospheric environmental flows are computed by a large eddy simulation (LES) code developed by the authors in the local urban area. In order to reduce the LES computation cost, a combined model for buildings in the urban area is proposed that in a central area, where the wind and pollution is most concerned, the buildings are properly resolved in fine grids and non-slip flow condition is prescribed at rigid boundaries whereas in the surrounding region the buildings are treated as drag element and coarse grids are used in computation. The wind field, temperature and carbon monoxide concentration fields are computed from 9 a.m. of October 26, 2009 to 8 a.m. of the next day in a built-up district of Beijing and the results show good agreement with observations. The advantage of proposed approach is that the multi-scale effect of atmospheric motion is considered and temporal evolution of flow structure in local urban area can be simulated by large eddy simulation at moderate computation cost.
机译:本文研究了当地市区街道水平的风场和交通污染物扩散。采用一种耦合方法,由天气研究和预报(WRF)中尺度模型提供了当地市区速度和温度的时变边界值,该模型可以计算整个城市的大气流量,同时可以计算大气环境流量作者在当地市区开发的大型涡流模拟(LES)代码。为了降低LES的计算成本,提出了城市建筑物的组合模型,即在风和污染最受关注的中部地区,建筑物采用精细网格进行适当解析,滑移条件为在刚性边界处规定,而在周围区域中,建筑物被视为阻力元素,并且在计算中使用粗网格。风场,温度和一氧化碳浓度场的计算是从2009年10月26日上午9点至次日第二天上午8点在北京的一个建成区进行的,结果与观测值吻合良好。提出的方法的优点是考虑了大气运动的多尺度效应,并且可以通过大涡模拟以适当的计算成本来模拟局部市区中流动结构的时间演化。

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