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Solvers for large-displacement fluid–structure interaction problems: segregated versus monolithic approaches

机译:解决大排量流体-结构相互作用问题的方法:分离与整体方法

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We compare the relative performance of monolithic and segregated (partitioned) solvers for large- displacement fluid–structure interaction (FSI) problems within the framework of oomph-lib, the object-oriented multi-physics finite-element library, available as open-source software at http://www.oomph-lib.org. Monolithic solvers are widely acknowledged to be more robust than their segregated counterparts, but are believed to be too expensive for use in large-scale problems. We demonstrate that monolithic solvers are competitive even for problems in which the fluid–solid coupling is weak and, hence, the segregated solvers converge within a moderate number of iterations. The efficient monolithic solution of large-scale FSI problems requires the development of preconditioners for the iterative solution of the linear systems that arise during the solution of the monolithically coupled fluid and solid equations by Newton’s method. We demonstrate that recent improvements to oomph-lib’s FSI preconditioner result in mesh-independent convergence rates under uniform and non-uniform (adaptive) mesh refinement, and explore its performance in a number of two- and three-dimensional test problems involving the interaction of finite-Reynolds-number flows with shell and beam structures, as well as finite-thickness solids.
机译:我们在oomph-lib(面向对象的多物理场有限元库)的框架下比较了整体式和隔离式(分区)求解器在大排量流体-结构相互作用(FSI)问题上的相对性能,该库可作为开源软件使用。 http://www.oomph-lib.org上的软件。众所周知,单片求解器比单独的求解器更健壮,但是对于大规模问题而言,单片求解器过于昂贵。我们证明了单片求解器即使在流固耦合较弱的问题上也具有竞争力,因此,分离的求解器可以在中等数量的迭代中收敛。大规模FSI问题的有效整体解决方案要求开发线性系统迭代解决方案的预处理器,该迭代器是通过牛顿法求解整体耦合的流体和固体方程组时出现的。我们证明,对oomph-lib FSI预调节器的最新改进导致在均匀和非均匀(自适应)网格细化下独立于网格的收敛速度,并探讨了其在涉及维普资讯http://www.cqvip.com具有壳和梁结构的有限雷诺数流,以及具有有限厚度的实体。

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