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Large-Eddy Simulation of the Daytime Boundary Layer in an Idealized Valley Using the Weather Research and Forecasting Numerical Model

机译:利用天气研究和数值模型对理想化山谷中白天边界层的大涡模拟

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摘要

A three-dimensional numerical meteorological model is used to perform large-eddy simulations of the upslope flow circulation over a periodic ridge-valley terrain. The subgrid-scale quantities are modelled using a prognostic turbulence kinetic energy (TKE) scheme, with a grid that has a constant horizontal resolution of 50 m and is stretched along the vertical direction. To account for the grid anisotropy, a modified subgrid length scale is used. To allow for the response of the surface fluxes to thevalley-flow circulation, the soil surface temperature is imposed and the surface heat and momentum fluxes are computed based on Monin-Obukhov similarity theory. The model is designed with a symmetrical geometry using periodic boundary conditions in boththe x and y directions. Two cases are simulated to study the influence of along-valley geostrophic wind forcing with different intensities. The presence of the orography introduces numerous complexities both in the mean properties of the flow and in theturbulent features, even for the idealized symmetric geometry. Classical definitions for the height of the planetary boundary layer (PBL) are revisited and redefined to capture the complex structure of the boundary layer. Analysis of first- and second-moment statistics, along with TKE budget, highlights the different structure of the PBL at different regions of the domain.
机译:三维数值气象模型用于对周期性脊-谷地形上的上坡流环流进行大涡模拟。使用预测湍流动能(TKE)方案对亚网格规模量进行建模,该网格的水平分辨率恒定为50 m,并且沿垂直方向拉伸。为了解决网格各向异性,使用了改进的子网格长度标度。为了允许表面通量对谷流循环的响应,施加土壤表面温度,并基于Monin-Obukhov相似性理论计算表面热和动量通量。使用在x和y方向上都具有周期性边界条件的对称几何设计模型。模拟了两个案例,研究了不同强度下沿谷地转风强迫的影响。地形的存在在流动的平均特性和湍流特征方面都引入了许多复杂性,即使对于理想的对称几何形状也是如此。行星边界层(PBL)高度的经典定义已被重新审视和重新定义,以捕获边界层的复杂结构。对第一和​​第二时刻的统计数据以及TKE预算的分析突出显示了该域不同区域中PBL的不同结构。

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