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Nonstandard Local Discontinuous Galerkin Methods for Fully Nonlinear Second Order Elliptic and Parabolic Equations in High Dimensions

机译:高维全非线性二阶椭圆和抛物方程的非标准局部不连续Galerkin方法

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摘要

This paper is concerned with developing accurate and efficient numerical methods for fully nonlinear second order elliptic and parabolic partial differential equations (PDEs) in multiple spatial dimensions. It presents a general framework for constructing high order local discontinuous Galerkin (LDG) methods for approximating viscosity solutions of these fully nonlinear PDEs. The proposed LDG methods are natural extensions of a narrow-stencil finite difference framework recently proposed by the authors for approximating viscosity solutions. The idea of the methodology is to use multiple approximations of first and second order derivatives as a way to resolve the potential low regularity of the underlying viscosity solution. Consistency and generalized monotonicity properties are proposed that ensure the numerical operator approximates the differential operator. The resulting algebraic system has several linear equations coupled with only one nonlinear equation that is monotone in many of its arguments. The structure can be explored to design nonlinear solvers. This paper also presents and analyzes numerical results for several numerical test problems in two dimensions which are used to gauge the accuracy and efficiency of the proposed LDG methods.
机译:本文涉及为多维空间中完全非线性的二阶椭圆和抛物线偏微分方程(PDE)开发准确有效的数值方法。它为构建高阶局部不连续Galerkin(LDG)方法提供了一个通用框架,以逼近这些完全非线性PDE的粘度解。提出的LDG方法是作者最近提出的用于近似粘度解的窄模板有限差分框架的自然扩展。该方法的思想是使用一阶和二阶导数的多个近似作为一种解决基础粘度溶液潜在的低规则性的方法。提出了一致性和广义单调性,以确保数值算子近似于微分算子。所得的代数系统具有几个线性方程,仅与一个非线性方程耦合,该非线性方程在其许多参数中都是单调的。可以探索该结构来设计非线性求解器。本文还提出并分析了二维中几个数值测试问题的数值结果,用于衡量所提出的LDG方法的准确性和效率。

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