将湍流的子网格尺度模型与数据同步

M. Buzzicotti, P. Clark Di Leoni
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引用次数: 20

摘要

大涡流紊流模拟是许多工程和地球物理环境中使用的强大工具。选择合适的子网格尺度模型的自由参数值是一项关键任务,目前的方法在这方面存在一些不足。使用一种叫做“轻推”的技术,我们表明大涡模拟可以与来自均匀和各向同性湍流的高分辨率直接数值模拟的数据同步。此外,我们发现同步程度取决于所使用的子网格尺度模型的参数值,这表明轻推可以作为一种选择模型最佳参数的方法。例如,我们表明,对于Smagorinsky模型,当其常数取通常值$0.16$时,同步是最佳的。分析同步动力学的重点是在相空间中重建轨迹,这与传统的大涡模拟的后验测试相反,后者只比较流动的统计数据。这些结果开辟了在大涡模拟的后验试验中利用非统计分析的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronizing subgrid scale models of turbulence to data
Large Eddy Simulations of turbulent flows are powerful tools used in many engineering and geophysical settings. Choosing the right value of the free parameters for their subgrid scale models is a crucial task for which the current methods present several shortcomings. Using a technique called nudging we show that Large Eddy Simulations can synchronize to data coming from a high-resolution direct numerical simulation of homogeneous and isotropic turbulence. Furthermore, we found that the degree of synchronization is dependent on the value of the parameters of the subgrid scale models utilized, suggesting that nudging can be used as a way to select the best parameters for a model. For example, we show that for the Smagorinsky model synchronization is optimal when its constant takes the usual value of $0.16$. Analyzing synchronization dynamics puts the focus on reconstructing trajectories in phase space, contrary to traditional a posteriori tests of Large Eddy Simulations where the statistics of the flows are compared. These results open up the possibility of utilizing non-statistical analysis in a posteriori tests of Large Eddy Simulations.
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