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A Comprehensive Modelling Approach for the Neutral Atmospheric Boundary Layer: Consistent Inflow Conditions, Wall Function and Turbulence Model

机译:中性大气边界层的综合建模方法:一致的入流条件,壁函数和湍流模型

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摘要

We report on a novel approach for the Reynolds-averaged Navier-Stokes (RANS) modelling of the neutral atmospheric boundary layer (ABL), using the standard k-ek-{varepsilon} turbulence model. A new inlet condition for turbulent kinetic energy is analytically derived from the solution of the k-ek-{varepsilon} model transport equations, resulting in a consistent set of fully developed inlet conditions for the neutral ABL. A modification of the standard k-ek-{varepsilon} model is also employed to ensure consistency between the inlet conditions and the turbulence model. In particular, the turbulence model constant C μ is generalized as a location-dependent parameter, and a source term is introduced in the transport equation for the turbulent dissipation rate. The application of the proposed methodology to cases involving obstacles in the flow is made possible through the implementation of an algorithm, which automatically switches the turbulence model formulation when going from the region where the ABL is undisturbed to the region directly affected by the building. Finally, the model is completed with a slightly modified version of the Richards and Hoxey rough-wall boundary condition. The methodology is implemented and tested in the commercial code Ansys Fluent 12.1. Results are presented for a neutral boundary layer over flat terrain and for the flow around a single building immersed in an ABL.
机译:我们报告了一种使用标准k-ek- {varepsilon}湍流模型对中性大气边界层(ABL)进行雷诺平均Navier-Stokes(RANS)建模的新方法。从k-ek- {varepsilon}模型输运方程的解中分析得出了湍流动能的新入口条件,从而为中性ABL产生了一套完全一致的充分发展的入口条件。还对标准k-ek- {varepsilon}模型进行了修改,以确保入口条件和湍流模型之间的一致性。特别地,将湍流模型常数C μ概括为位置相关的参数,并且在传输方程中引入了湍流耗散率的源项。通过算法的实现,可以将所提出的方法应用于流中障碍物的情况,当从ABL不受干扰的区域转到受建筑物直接影响的区域时,该算法会自动切换湍流模型公式。最后,使用Richards和Hoxey粗糙壁边界条件的略微修改版本来完成模型。该方法已在商业代码Ansys Fluent 12.1中实施和测试。给出了平坦地形上的中性边界层以及浸入ABL中的单个建筑物周围的水流的结果。

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