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Efficient iterative solvers for structural dynamics problems

机译:结构动力学问题的高效迭代求解器

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摘要

Direct solvers are commonly used in implicit finite element codes for structural dynamics problems. This study explores an alternative approach to solving the resulting linear systems by using preconditioned iterative schemes such as the preconditioned conjugate gradient algorithm and its variants. Preconditioners used in this study include approximate Cholesky factorization, block Jacobi, and the symmetric Gauss-Seidel over-relaxation scheme. The effects of various preconditioners and ordering schemes on the solution time and required storage are investigated. Performance results of these iterative solver are compared against the MA57 direct solver routine of the commercial Harwell Software Library.
机译:直接求解器通常用于结构动力学问题的隐式有限元代码中。这项研究探索了一种通过使用预处理的迭代方案(例如,预处理的共轭梯度算法及其变体)来求解所得线性系统的替代方法。本研究中使用的预处理器包括近似的Cholesky因式分解,块Jacobi和对称的Gauss-Seidel过松弛方案。研究了各种预处理器和排序方案对求解时间和所需存储的影响。将这些迭代求解器的性能结果与商业Harwell软件库的MA57直接求解器例程进行了比较。

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