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Improved vortex method for large-eddy simulation inflow generation

机译:改进的大涡流流入发电涡流法

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摘要

The generation of turbulent inflow conditions in large-eddy simulation (LES) is a key ingredient for general applications of LES in both academic turbulent flows and industrial designs with complicated engineering flows. This is because accurate predictions of the fluid behaviour are strongly dependent on the inflow conditions, particularly in turbulent flows at high turbulent Reynolds numbers. This paper aims at improving the vortex method (VM) of Sergent that demands long adaptive distances (12 times the half channel height, for a channel flow at Re-tau = 395) to achieve high quality turbulence, and evaluating the equilibrium of the flow field obtained in terms of both the equilibrium of the mean flow and that of the turbulence (inter-scale turbulent energy transfer). The mean flow equilibrium is checked with classic criteria such as the friction velocity. In order to assess the equilibrium of turbulence, we propose using the velocity-derivative skewness, because it associates with the balance of energy transfer between large- and small-scale fluid motions. Numerical tests with the optimised set of model parameters reveal that the IVM is very efficient, in terms of adaptive distance, in generating high-quality synthetic turbulent fluctuations over a moderate distance: 6h for channel flow and 21 delta for flat-plate boundary layer, with h and delta being respectively the half channel height and the nominal boundary layer thickness. (C) 2018 Elsevier Ltd. All rights reserved.
机译:大涡流模拟(LES)中湍流流入条件的产生是LES在学术动荡流动和具有复杂工程流动的工业设计中的一般应用的关键因素。这是因为对流体行为的精确预测是强烈的依赖于流入条件,特别是在高湍流雷诺数的湍流中。本文旨在改善要求长自适应距离的涡旋方法(VM)(半通道高度的12倍,在RE-TAU = 395处的通道流动)以实现高质量的湍流,并评估流量的平衡根据平均流量的平衡和湍流(级间湍流能量转移)而获得的场。使用诸如摩擦速度的经典标准检查平均流量平衡。为了评估湍流的平衡,我们建议使用速度 - 衍生物偏振,因为它与大规模和小规模的流体运动之间的能量转移的平衡相关。具有优化的模型参数的数值测试表明,在适应距离方面,IVM非常有效,在适应距离方面,在适度距离上产生高质量的合成湍流波动:6H用于通道流动和用于平板边界层的21倍Δ,用H和DELTA分别是半通道高度和标称边界层厚度。 (c)2018年elestvier有限公司保留所有权利。

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