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Comparative statistics of selected subgrid-scale models in large-eddy simulations of decaying, supersonic magnetohydrodynamic turbulence

机译:衰减大型跨越模拟中所选亚级模型的比较统计,超声磁力流体动力学湍流

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Large-eddy simulations (LES) are a powerful tool in understanding processes that are inaccessible by direct simulations due to their complexity, for example, in the highly turbulent regime. However, their accuracy and success depends on a proper subgrid-scale (SGS) model that accounts for the unresolved scales in the simulation.We evaluate the applicability of two traditional SGS models, namely the eddy-viscosity (EV) and the scale-similarity (SS) models, and one recently proposed nonlinear (NL) SGS model in the realm of compressible magnetohydrodynamic (MHD) turbulence. Using 209 simulations of decaying, supersonic (initial sonic Mach numberMs ≈ 3) MHD turbulence with a shock-capturing scheme and varying resolution, SGS model, and filter, we analyze the ensemble statistics of kinetic and magnetic energy spectra and structure functions. Furthermore, we compare the temporal evolution of lower- and higher-order statistical moments of the spatial distributions of kinetic and magnetic energy, vorticity, current density, and dilatation magnitudes.We find no statistical influence on the evolution of the flow by any model if grid-scale quantities are used to calculate SGS contributions. In addition, the SS models, which employ an explicit filter, have no impact in general. On the contrary, both the EV and NL models change the statistics if an explicit filter is used. For example, they slightly increase the dissipation on the smallest scales. We demonstrate that the nonlinear model improves higher-order statistics already with a small explicit filter, i.e., a three-point stencil. The results of, e.g., the structure functions or the skewness and kurtosis of the current density distribution are closer to the ones obtained from simulations at higher resolution. In addition, no additional regularization to stabilize the model is required.We conclude that the nonlinear model with a small explicit filter is suitable for application in more complex scenarios when higher-order sta
机译:大涡模拟(LES)是一种强大的工具,可以在理解过程中,由于它们的复杂性,例如,在高度动荡的状态下,直接模拟无法进入。但是,它们的准确性和成功取决于适当的子地图(SGS)模型,其考虑了仿真中未解决的尺度。我们评估了两个传统SGS模型的适用性,即涡粘度(EV)和比例相似度(SS)模型,以及最近提出的可压缩磁力流体动力学(MHD)湍流领域的非线性(NL)SGS模型。使用209次衰减模拟,超音速(初始声波Mach Numberms≈3)MHD湍流,具有冲击捕获方案和不同分辨率,SGS模型和滤波器,我们分析了动力学和磁能谱和结构功能的集合统计。此外,我们比较动力学和磁能,涡流,电流密度和扩张大小的空间分布的低阶和高阶统计矩的时间演变。如果网格级数量用于计算SGS贡献。此外,使用显式过滤器的SS模型通常不会影响。相反,如果使用显式过滤器,则EV和NL模型都会更改统计信息。例如,它们略微增加最小尺度的耗散。我们展示非线性模型已经提高了具有小明确滤波器的高阶统计信息,即三点模版。电流密度分布的结构功能或裂缝和峰度的结果更接近于在更高分辨率下从模拟获得的结果。此外,不需要额外的正则化来稳定模型。我们得出结论,带有小型显式过滤器的非线性模型适用于在高阶STA时更复杂的场景中的应用

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