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Large-eddy simulation of very large kinetic and magnetic Reynolds number isotropic magnetohydrodynamic turbulence using a spectral subgrid model

机译:使用谱子网格模型对非常大的动磁雷诺数和各向同性磁流体动力湍流进行大涡模拟

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摘要

A spectral eddy viscosity and magnetic resistivity subgrid-scale model based on the eddy-damped quasi-normal Markovian (EDQNM) kinetic and magnetic energy transfers is used in large-eddy simulation (LES) of asymptotically large kinetic and magnetic Reynolds number magnetohydrodynamic (MHD) turbulence. The model is assessed a posteriori on three-dimensional, incompressible, isotropic, nonhelical, freely decaying MHD turbulence. Using LES initialized with spectra such that the Alfven ratio of kinetic to magnetic energy equals unity, it is shown that the kinetic energy and magnetic energy spectra exhibit k(-5/3) Kolmogorov inertial subrange scalings consistent with the EDQNM model.
机译:在渐近大动磁雷诺数磁流体动力学(MHD)的大涡模拟(LES)中,使用了基于涡阻尼准准马尔科夫动能和磁能传递的谱涡粘度和磁阻子网格模型。 )湍流。在三维,不可压缩,各向同性,非螺旋,自由衰减的MHD湍流上对模型进行了后验评估。使用以频谱初始化的LES,以使动能与磁能的Alfven比等于1,这表明动能和磁能谱表现出与EDQNM模型一致的k(-5/3)Kolmogorov惯性子范围标度。

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