This work presents IMplicit-EXplicit (IMEX) formulations for discontinuous Galerkin (DG) discretizations of the compressible Euler equations governing non-hydrostatic atmospheric flows. In particular, we show two different IMEX formulations that not only treat the stiffness due to the governing dynamics but also the domain discretization. We present these formulations for two different equation sets typically employed in atmospheric modeling. For both equation sets, efficient Schur complements are derived and the challenges and remedies for deriving them are discussed. The performance of these IMEX formulations of different orders are investigated on both 2D (box) and 3D (sphere) test problems and shown to achieve their theoretical rates of convergence and their efficiency with respect to both mesoscale and global applications are presented.
翻译:这项工作介绍了关于非氢静态大气流动的压缩电动方程式不连续的Galerkin(DG)离散的IMMEX(IMEX)配方,特别是,我们展示了两种不同的IMEX配方,这些配方不仅处理管理动态造成的僵硬性,而且处理领域离散性;我们展示了大气模型中通常使用的两种不同的方程式的配方;对于两种方程式,都提出了高效的Schur补充,并讨论了产生这些方程式的挑战和补救措施;对不同单体的IMEX配方的性能进行了2D(框)和3D(外观)测试问题的调查,并展示了这些问题,以达到其理论趋同率,以及在中间尺度和全球应用方面的效率。