The Existence the Solution of Nonlinear Discrete Schemes and Convergence of a Linearized Iterative Method for time-dependent PNP Equations

Yang Liu, Shi Shu, Ying Yang
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Abstract

We establish the existence theory of several commonly used finite element (FE) nonlinear fully discrete solutions, and the convergence theory of a linearized iteration. First, it is shown for standard FE, SUPG and edge-averaged method respectively that the stiffness matrix is a column M-matrix under certain conditions, and then the existence theory of these three FE nonlinear fully discrete solutions is presented by using Brouwer's fixed point theorem. Second, the contraction of a commonly used linearized iterative method-Gummel iteration is proven, and then the convergence theory is established for the iteration. At last, a numerical experiment is shown to verifies the theories.
时变PNP方程的非线性离散格式的存在性、解和线性化迭代法的收敛性
建立了几种常用有限元非线性全离散解的存在性理论和线性化迭代的收敛性理论。首先,分别证明了标准有限元法、SUPG法和边缘平均法的刚度矩阵在一定条件下为列矩阵,然后利用browwer不动点定理给出了这三种有限元非线性全离散解的存在性理论。其次,证明了一种常用的线性化迭代方法—gummel迭代的收缩性,并建立了该迭代的收敛性理论。最后通过数值实验对理论进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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