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A new class of finite element variational multiscale turbulence models for incompressible magnetohydrodynamics

机译:不可压缩磁流体动力学的一类新型有限元变分多尺度湍流模型

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New large eddy simulation (LES) turbulence models for incompressible magnetohydrodynamics (MHD) derived from the variational multiscale (VMS) formulation for finite element simulations are introduced. The new models include the variational multiscale formulation, a residual-based eddy viscosity model, and a mixed model that combines both of these component models. Each model contains terms that are proportional to the residual of the incompressible MHD equations and is therefore numerically consistent. Moreover, each model is also dynamic, in that its effect vanishes when this residual is small. The new models are tested on the decaying MHD Taylor Green vortex at low and high Reynolds numbers. The evaluation of the models is based on comparisons with available data from direct numerical simulations (DNS) of the time evolution of energies as well as energy spectra at various discrete times. A numerical study, on a sequence of meshes, is presented that demonstrates that the large eddy simulation approaches the DNS solution for these quantities with spatial mesh refinement. (C) 2015 Elsevier Inc. All rights reserved.
机译:引入了新的大涡模拟(LES)湍流模型,用于不可压缩磁流体动力学(MHD),该模型由变分多尺度(VMS)公式导出,用于有限元模拟。新模型包括变分多尺度公式,基于残差的涡流粘度模型以及结合了这两个组件模型的混合模型。每个模型都包含与不可压缩MHD方程的残差成比例的项,因此在数值上是一致的。此外,每个模型也是动态的,因为当此残差较小时,其效果就会消失。新模型在雷诺数低和高时在衰减的MHD泰勒格林涡旋上进行了测试。对模型的评估是基于与直接数值模拟(DNS)的时间数据进行比较的结果,这些数据是能量在不同离散时间的时间演化以及能谱的。进行了一系列网格划分的数值研究,结果表明,大型涡模拟通过空间网格划分对这些数量的DNS方法进行了求解。 (C)2015 Elsevier Inc.保留所有权利。

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