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首页> 外文期刊>International journal of computational fluid dynamics >Analysis of low-pass filters for approximate deconvolution closure modelling in one-dimensional decaying Burgers turbulence
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Analysis of low-pass filters for approximate deconvolution closure modelling in one-dimensional decaying Burgers turbulence

机译:一维衰减Burgers湍流中用于近似反卷积闭合建模的低通滤波器分析

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摘要

The idea of spatial filtering is central in approximate deconvolution large-eddy simulation (AD-LES) of turbulent flows. The need for low-pass filters naturally arises in the approximate deconvolution approach which is based solely on mathematical approximations by employing repeated filtering operators. Two families of low-pass spatial filters are studied in this paper: the Butterworth filters and the Pade filters. With a selection of various filtering parameters, variants of the AD-LES are systematically applied to the decaying Burgers turbulence problem, which is a standard prototype for more complex turbulent flows. Comparing with the direct numerical simulations, it is shown that all forms of the AD-LES approaches predict significantly better results than the under-resolved simulations at the same grid resolution. However, the results highly depend on the selection of the filtering procedure and the filter design. It is concluded that a complete attenuation for the smallest scales is crucial to prevent energy accumulation at the grid cut-off.
机译:在湍流的近似反卷积大涡模拟(AD-LES)中,空间滤波的思想是中心。在近似反卷积方法中自然会产生对低通滤波器的需求,这种方法仅基于采用重复滤波算子的数学近似。本文研究了两类低通空间滤波器:巴特沃思滤波器和帕德滤波器。通过选择各种过滤参数,AD-LES的变体被系统地应用于衰减的Burgers湍流问题,这是更复杂的湍流的标准原型。与直接数值模拟相比,在相同的网格分辨率下,所有形式的AD-LES方法预测的结果要比欠解析模拟的结果好得多。但是,结果在很大程度上取决于过滤程序和过滤器设计的选择。结论是,最小尺度的完全衰减对于防止电网截止时的能量积累至关重要。

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