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An explicit direct FEM-BEM coupling procedure for nonlinear dynamics

机译:非线性动力学的显式直接FEM-BEM耦合过程

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摘要

In this work, an explicit direct FEM-BEM coupling procedure is proposed for nonlinear dynamics. In this procedure, each subdomain of the model is analysed separately taking into account proper interface conditions, allowing optimized solver procedures to be applied within each subdomain. In addition, the solution procedure is carried out directly (i.e., without any iterative process), since an explicit time-marching technique is employed within the FEM subdomains. In this context, a locally stabilized central difference approach is utilized, ensuring stability for the FEM analyses, as well as enhanced accuracy. Thus, a very efficient and versatile coupled solution takes place, allowing the direct and independent solution of the subdomains of the model, without regarding critical time-steps limitations within the explicit subdomains. A multi-level time-step algorithm is also considered here, enabling different time-steps to be applied to each subdomain of the model, further improving the flexibility of the coupled analyses. At the end of the paper, numerical applications are presented, illustrating the effectiveness and versatility of the proposed methodology.
机译:在这项工作中,为非线性动力学提出了一个明确的直接FEM-BEM耦合程序。在此过程中,将考虑适当的接口条件分别分析模型的每个子域,从而允许在每个子域中应用优化的求解器过程。另外,由于在FEM子域内采用了显式的时间行进技术,因此可以直接执行求解过程(即,无需任何迭代过程)。在这种情况下,使用了局部稳定的中心差方法,以确保FEM分析的稳定性以及更高的准确性。因此,发生了一种非常有效且通用的耦合解决方案,允许直接和独立地求解模型的子域,而无需考虑显式子域内的关键时间步长限制。这里还考虑了多级时间步长算法,可以将不同的时间步长应用于模型的每个子域,从而进一步提高了耦合分析的灵活性。在本文的最后,提出了数值应用,说明了所提出方法的有效性和多功能性。

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