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Multi-solver algorithms for the partitioned simulation of fluid-structure interaction

机译:用于流体-结构相互作用分区模拟的多求解器算法

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In partitioned fluid-structure interaction simulations, the flow equations and the structural equations are solved separately. As a result, a coupling algorithm is needed to enforce the equilibrium on the fluid-structure interface in cases with strong interaction. This coupling algorithm performs coupling iterations between the solver of the flow equations and the solver of the structural equations. Current coupling algorithms couple one flow solver with one structural solver. Here, a new class of multi-solver quasi-Newton coupling algorithms for unsteady fluid-structure interaction simulations is presented. More than one flow solver and more than one structural solver are used for a single simulation. The numerical experiments demonstrate that the duration of a simulation decreases as the number of solvers is increased.
机译:在分区的流固耦合模拟中,分别求解流动方程和结构方程。结果,在强烈相互作用的情况下,需要一种耦合算法来在流体-结构界面上加强平衡。该耦合算法在流动方程的求解器与结构方程的求解器之间执行耦合迭代。电流耦合算法将一个流动求解器与一个结构求解器耦合。在此,提出了用于非定常流固耦合模拟的一类新的多求解器拟牛顿耦合算法。单个模拟使用不止一个流动求解器和不止一个结构求解器。数值实验表明,随着求解器数量的增加,仿真的持续时间减少。

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