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首页> 外文期刊>International journal of computational fluid dynamics >LES study of grid-generated turbulent inflow conditions with moderate number of mesh cells at low Re numbers
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LES study of grid-generated turbulent inflow conditions with moderate number of mesh cells at low Re numbers

机译:LES研究低Re数下中等网格数的网格生成湍流流入条件

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摘要

A passive grid-generated turbulence technique for generating turbulent inflow conditions in large-eddy simulation (LES) is developed on moderate number of mesh cells and the results are compared with synthetic methods and wind tunnel experiments performed at Reynolds (Re) number of order 100(based on Taylor microscale). Consistent with previous investigations, it is found that the synthetic methods turbulence dissipate the turbulence kinetic energy very quickly while the present technique represents this decay more accurately. However, this pre-computation method usually requires considerable computational cost. The aim of this study is, therefore, to decrease the computational cost by employing a relatively coarse mesh resolution accompanied with an appropriate wall modelling approach in the solid boundary. The results are within an acceptable accuracy and, therefore, offer a cost-effective solution to generate inflow turbulence parameters for their use in different aerodynamic applications at low Re numbers.
机译:在中等数量的网格单元上开发了用于在大涡模拟(LES)中生成湍流流入条件的无源网格生成湍流技术,并将结果与​​合成方法和以雷诺数(Re)的100级进行的风洞实验进行了比较(基于泰勒微尺度)。与先前的研究一致,发现合成方法湍流非常快地耗散了湍动能,而本技术更精确地表示了这种衰减。但是,这种预计算方法通常需要大量的计算成本。因此,本研究的目的是通过在固体边界中采用相对粗略的网格分辨率以及适当的壁建模方法来降低计算成本。结果在可接受的精度范围内,因此,提供了一种经济高效的解决方案,以生成流入湍流参数,以便将其用于低Re数的不同空气动力学应用中。

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