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A Study of preconditioned Krylov subspace methods with reordering for linear systems from a biphasic v-p finite element formulation

机译:基于双相v-p有限元公式的线性系统预排序的预处理Krylov子空间方法的研究

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A study was conducted on combinations of preconditioned iterative methods with matrix reordering to solve the linear systems arising from a biphasic velocity-pressure (v-p) finite element formulation used to simulate soft hydrated tissues in the human musculoskeletal system. Krylov subspace methods were tested due to the symmetric indefiniteness of our systems, specifically the generalized minimal residual (GMRES), transpose-free quasi-minimal residual (TFQMR), and biconjugate gradient stabilized (BiCGSTAB) methods. Standard graph reordering techniques were used with incomplete LU (ILU) preconditioning. Performance of the methods was compared on the basis of convergence rate, computing time, and memory requirements. Our results indicate that performance is affected more significantly by the choice of reordering scheme than by the choice of Krylov method. Overall, BiCGSTAB with one-way dissection (OWD) reordering performed best for a test problem representative of a physiological tissue layer. The preferred methods were then used to simulate the contact of the humeral head and glenoid tissue layers in glenohumeral joint of the shoulder, using a penetration-based method to approximate contact. The distribution of pressure and stress fields within the tissues shows significant through-thickness effects and demonstrates the importance of simulating soft hydrated tissues with a biphasic model.
机译:对预处理迭代方法与矩阵重排序的组合进行了研究,以解决线性速度系统产生的线性系统,该线性系统是由两相速度-压力(v-p)有限元公式构成的,用于模拟人肌肉骨骼系统中的软化水合组织。由于我们系统的对称不确定性,对Krylov子空间方法进行了测试,特别是广义最小残差(GMRES),无转置准最小残差(TFQMR)和双共轭梯度稳定(BiCGSTAB)方法。标准图形重新排序技术与不完全LU(ILU)预处理一起使用。根据收敛速度,计算时间和内存要求对方法的性能进行了比较。我们的结果表明,选择重新排序方案比选择Krylov方法对性能的影响更大。总体而言,具有单向解剖(OWD)重新排序的BiCGSTAB对于代表生理组织层的测试问题表现最佳。然后使用基于渗透的方法近似接触,将优选方法用于模拟肱骨头和肩关节盂肱关节中盂盂组织层的接触。组织内压力场和应力场的分布显示出显着的增厚效果,并证明了使用双相模型模拟水化软组织的重要性。

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