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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Parallel ILU preconditioning, a priori pivoting and segregation of variables for iterative solution of the mixed finite element formulation of the Navier-Stokes equations
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Parallel ILU preconditioning, a priori pivoting and segregation of variables for iterative solution of the mixed finite element formulation of the Navier-Stokes equations

机译:并行ILU预处理,变量的先验枢转和分离,用于Navier-Stokes方程的混合有限元公式的迭代求解

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摘要

A parallel ILU preconditioning algorithm for the incompressible Navier-Stokes equations has been designed, implemented and tested. The computational mesh is divided into N subdomains which are processed in parallel in different processors. During ILU factorization, matrices and vectors associated with the nodes on the interface between the subdomains are communicated to the equation matrices to the adjacent subdomain. The bases for the parallel algorithm are an appropriate node ordering scheme and a segregation of velocity and pressure degrees of freedom. The inner nodes of the subdomain are numbered first and then the nodes on the interface between the subdomains. To avoid division by zero during the ILU factorization, the equations corresponding to the velocity degrees of freedom are assembled first in the global equation matrix, followed by the equations corresponding to the pressure degrees of freedom.
机译:设计,实现和测试了不可压缩的Navier-Stokes方程的并行ILU预处理算法。计算网格被划分为N个子域,这些子域在不同的处理器中并行处理。在ILU分解过程中,与子域之间的接口上的节点关联的矩阵和向量被传递到相邻子域的方程矩阵。并行算法的基础是适当的节点排序方案以及速度和压力自由度的隔离。首先对子域的内部节点编号,然后对子域之间的接口上的节点编号。为了避免在ILU分解过程中被零除,在全局方程矩阵中首先组装与速度自由度相对应的方程,然后在与压力自由度相对应的方程中进行组装。

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