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首页> 外文期刊>International journal of computational fluid dynamics >A study on the behaviour of high-order flux reconstruction method with different low-dissipation numerical fluxes for large eddy simulation
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A study on the behaviour of high-order flux reconstruction method with different low-dissipation numerical fluxes for large eddy simulation

机译:大型助剂数值通量大型涡流模拟的高阶通量重建方法的研究

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This work focuses on the numerical dissipation features of high-order flux reconstruction (FR) method combined with different numerical fluxes in turbulence flows. The famous Roe and AUSM+ numerical fluxes together with their corresponding low-dissipation enhanced versions (LMRoe, SLAU2) and higher resolution variants (HR-LMRoe, HR-SLAU2) are incorporated into FR framework, and the dissipation interplay of these combinations is investigated in implicit large eddy simulation. The numerical dissipation stemming from these convective numerical fluxes is quantified by simulating the inviscid Gresho vortex, the transitional Taylor-Green vortex and the homogenous decaying isotropic turbulence. The results suggest that low-dissipation enhanced versions are preferential both in high-order and low-order cases to their original forms, while the use of HR-SLAU2 has marginal improvements and the HR-LMRoe leads to degenerated solution with high-order. In high-order the effects of numerical fluxes are reduced, and their viscosity may not be dissipative enough to provide physically consistent turbulence when under-resolved.
机译:这项工作侧重于高阶通量重建(FR)方法的数值耗散特征,与湍流流动中的不同数值通量相结合。着名的ROE和AUSM +数值通量与它们相应的低耗散增强版(LMROE,SLAU2)和更高分辨率变体(HR-LMROE,HR-SLAU2)结合在FR框架中,并研究了这些组合的耗散相互作用隐式大涡模拟。通过模拟活性GRESHO涡流,过渡泰勒 - 绿色涡流和均匀衰减各向同性湍流来量化来自这些对流数值助熔剂的数值耗散量化。结果表明,低耗散增强版本优先于高阶和低阶案例到其原始形式,而HR-SLAU2的使用具有边际改善,HR-LMROE能够高阶导致退化的解决方案。在高阶的情况下,减少了数值通量的效果,并且它们的粘度可能不足以在被解析时提供物理一致的湍流。

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