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Large Eddy Simulations of Model-Scale Turbulent Atmospheric Boundary Layer Flows

机译:模型型湍流大气边界层流动的大涡模拟

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This paper presents large eddy simulations (LES) of model-scaled neutrally stratified atmospheric boundary layer (ABL) flows for structural engineering applications and examines their statistical properties. A one-k-equation eddy model is used for the subgrid-scale (SGS) motions, and a wall shear model is applied on the ground. The mean streamwise velocity profile is approximately logarithmic, yet near the ground a mismatch persists because of the limited accuracy of the SGS model. The second moments of the turbulence represent well the underlying physics. The spectra of the velocity components at a point are consistent with commonly accepted expressions. The spatial coherences decay exponentially as functions of reduced frequencies. The results suggest that, except for the mean velocity near the ground, the ABL turbulence statistics can be well represented by large eddy simulations with simple SGS and wall models. (C) 2017 American Society of Civil Engineers.
机译:本文介绍了模型鳞片中性分层大气边界层(ABL)的大型涡流模拟(LES),用于结构工程应用,并检查其统计学性质。 一k型型涡流模型用于底片级(SGS)运动,墙面剪切模型施加在地面上。 平均流动速度曲线是近似对数,但由于SGS模型的精度有限,但接地仍然存在不匹配。 湍流的第二个时刻代表了基础物理学。 点的速度分量的光谱与常见的表达式一致。 空间相干呈指数衰减,作为频率降低的功能。 结果表明,除了在地面附近的平均速度之外,ABL湍流统计可以通过简单的SGS和墙壁模型进行大型涡流模拟。 (c)2017美国土木工程师协会。

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