论非标准最大值原理及其在构建多维准抛物方程单调有限差分方案中的应用

Pub Date : 2024-07-30 DOI:10.1007/s11253-024-02313-y
Le Minh Hieu, Nguyen Huu Nguyen Xuan, Dang Ngoc Hoang Thanh
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引用次数: 0

摘要

我们考虑了输入数据符号可变的差分最大值原理,并将其应用于研究有限差分方案(FDS)的单调性和收敛性。也就是说,我们考虑了具有无约束非线性的多维准线性抛物方程的 Dirichlet 初始边界值问题。我们在均匀网格上构建了二阶精度的无条件单调线性化有限差分方案。获得了网格解的双面估计值,该估计值与精确解的类似估计值完全一致。这些估计值被用来证明网格 L2 准则中的 FDS 的收敛性。我们还介绍了一项研究,旨在为具有第三类边界条件和无限非线性的抛物对流扩散方程构建二阶单调差分方案,而无需使用域边界上的初微分方程。其目标是将平稳解的存在性和唯一性假设与正则化原理相结合。在这种情况下,边界条件直接近似于二阶两点模版。
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On the Nonstandard Maximum Principle and Its Application for Construction of Monotone Finite-Difference Schemes for Multidimensional Quasilinear Parabolic Equations

We consider the difference maximum principle with input data of variable sign and its application to the investigation of the monotonicity and convergence of finite-difference schemes (FDSs). Namely, we consider the Dirichlet initial-boundary-value problem for multidimensional quasilinear parabolic equations with unbounded nonlinearity. Unconditionally monotone linearized finite-difference schemes of the second-order of accuracy are constructed on uniform grids. A two-sided estimate for the grid solution, which is completely consistent with similar estimates for the exact solution, is obtained. These estimates are used to prove the convergence of FDSs in the grid L2-norm. We also present a study aimed at constructing second-order monotone difference schemes for the parabolic convection-diffusion equation with boundary conditions of the third kind and unlimited nonlinearity without using the initial differential equation on the domain boundaries. The goal is a combination of the assumption of existence and uniqueness of a smooth solution and the regularization principle. In this case, the boundary conditions are directly approximated on a two-point stencil of the second order.

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