Local and parallel finite element algorithm based on the partition of unity method for the incompressible MHD flow

被引:1
|
作者
Xiaojing Dong
Yinnian He
Hongbo Wei
Yuhong Zhang
机构
[1] Institute of Applied Physics and Computational Mathematics,Hunan Key Laboratory for Computation and Simulation in Science and Engineering, Key Laboratory of Intelligent Computing & Information Processing of Ministry of Education, School of Mathematics and
[2] Xiangtan University,School of Mathematics and Statistics
[3] Xi’an Jiaotong University,undefined
[4] The 20th Research Institute of China Electronics Technology Group Corporation,undefined
来源
关键词
Local and parallel algorithm; Finite element; Partition of unity method; Stationary incompressible magnetohydrodynamics; 35Q30; 65M60; 65N30; 76D05;
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学科分类号
摘要
Based on the partition of unity method (PUM), a local and parallel finite element method is designed and analyzed for solving the stationary incompressible magnetohydrodynamics (MHD). The key idea of the proposed algorithm is to first solve the nonlinear system on a coarse mesh, divide the globally fine grid correction into a series of locally linearized residual problems on some subdomains derived by a class of partition of unity, then compute the local subproblems in parallel, and obtain the globally continuous finite element solution by assembling all local solutions together by the partition of unity functions. The main feature of the new method is that the partition of unity provide a flexible and controllable framework for the domain decomposition. Finally, the efficiency of our theoretical analysis is tested by numerical experiments.
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页码:1295 / 1319
页数:24
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