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Simulating Turbulent Buoyant Flow by a Simple LES-Based Thermal Lattice Boltzmann Model

机译:通过基于LES的简单热格子Boltzmann模型模拟湍流浮力

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To simulate turbulent buoyant flow in geophysical science, where usually the vorticity-streamfunction equations instead of the primitive-variables Navier-Stokes equations serve as the governing equations, a novel and simple thermal lattice Boltzmann model is proposed based on large eddy simulation (LES). Thanks to its intrinsic features, the present model is efficient and simple for thermal turbulence simulation. Two-dimensional numerical simulations of natural convection in a square cavity were performed at high Rayleigh number varying from104to1010with Prandtl number at 0.7. The advantages of the present model are validated by numerical experiments.
机译:为了模拟地球物理中的湍流浮力流,通常以涡流函数方程代替原始变量Navier-Stokes方程为控制方程,基于大涡模拟(LES)提出了一种新颖且简单的热格子Boltzmann模型。 。由于其固有的特征,本模型对于热湍流仿真是高效且简单的。在高瑞利数(从104到1010,Prandtl数为0.7)下,对方腔内自然对流进行了二维数值模拟。通过数值实验验证了本模型的优点。

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