In this paper, we present a positivity-preserving limiter for nodal Discontinuous Galerkin disctretizations of the compressible Euler equations. We use a Legendre-Gauss-Lobatto (LGL) Discontinuous Galerkin Spectral Element Method (DGSEM) and blend it locally with a consistent LGL-subcell Finite Volume (FV) discretization using a hybrid FV/DGSEM scheme that was recently proposed for entropy stable shock capturing. We show that our strategy is able to ensure robust simulations with positive density and pressure when using the standard and the split-form DGSEM. Furthermore, we show the applicability of our FV positivity limiter in extremely under-resolved vortex dominated simulations and in problems with shocks.
翻译:在本文中,我们展示了一个用于节点、不连续的Gaus-Lobatto(LGL)硬盘-Gauss-Lobatto(LGL)不连续的Galerkin光谱元素法(DGSEM)的活性保护限制值,并将它与一个一致的LGL-子细胞Finite 量(FV)分解,这个组合FV/DGSEM计划是最近提出的,用于捕捉诱导稳定冲击的混合FV/DGSEM计划。我们表明,我们的战略能够在使用标准和分形DGSEM时确保以正密度和压力进行强力模拟。此外,我们展示了我们的FV假设极限值在极溶解不足的磁性模拟中和冲击产生的问题中的适用性。