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A nonlinear multigrid solver for a semi-Lagrangian potential vorticity-based shallow-water model on the sphere

机译:基于半拉格朗日势涡的球面浅水模型的非线性多重网格求解器

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In an earlier paper, we developed a new formulation of the shallow-water equations on the sphere, based on the semi-Lagrangian advection of potential vorticity. An important feature of our two-time-level model is that forward extrapolation of the nonlinear terms is avoided. In this paper, we develop a multigrid algorithm for solving the resulting system of three coupled nonlinear equations. We include a discussion of basic multigrid methods, along with some more advanced techniques required for the development of the multigrid scheme for this system. Results are presented showing that usual optimal multigrid efficiency is obtained. [References: 12]
机译:在较早的论文中,我们基于势涡的半拉格朗日平流,开发了球体上浅水方程的新公式。我们的两级模型的一个重要特征是避免了非线性项的正向外推。在本文中,我们开发了一种多重网格算法来求解三个耦合的非线性方程组的结果系统。我们将讨论基本的多网格方法,以及为该系统开发多网格方案所需的一些更高级的技术。结果表明,可以获得通常的最佳多电网效率。 [参考:12]

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