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A FEM-BEM coupling procedure to model the propagation of interacting acoustic-acoustic/acoustic-elastic waves through axisymmetric media

机译:FEM-BEM耦合过程,用于模拟相互作用的声-声/声-弹性波通过轴对称介质的传播

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In the present work the propagation of waves through axisymmetric bodies is analysed, taking into account acoustic-acoustic/acoustic-elastic interacting media and coupled numerical methodologies. The boundary element method (BEM) is here employed to model acoustic media: its time convolution integrals are evaluated analytically and the theta method is adopted to advance the solution on time. The finite element method (FEM), on the other hand, models wave propagation through elastic and acoustic media, the Newmark Method being employed for time stepping. The FEM-BEM coupling is accomplished through an iterative process in which variables at common interfaces are updated until convergence is achieved. Thus, each sub-domain is analysed independently, so that the numerical algorithm can take full advantage of the favourable features of the different methods involved. Relaxation parameters, which are introduced in order to speed up and/or ensure convergence, and the possibility to consider different time steps within each sub-domain are two factors that improve substantially the efficiency, stability, accuracy and flexibility of the coupled analysis. The potentialities of the proposed procedures are illustrated through numerical examples presented at the end of the paper.
机译:在本工作中,考虑了声-声/声-弹相互作用的介质以及耦合的数值方法,分析了通过轴对称体的波传播。此处采用边界元方法(BEM)对声学介质进行建模:分析其时间卷积积分,并采用theta方法按时求解。另一方面,有限元方法(FEM)对通过弹性和声学介质传播的波进行建模,Newmark方法用于时间步进。 FEM-BEM耦合是通过迭代过程完成的,在该过程中,将更新公共接口上的变量,直到实现收敛为止。因此,每个子域都是独立分析的,因此数值算法可以充分利用所涉及的不同方法的优势。引入松弛参数以加快和/或确保收敛,以及考虑每个子域内不同时间步长的可能性是两个因素,它们极大地提高了耦合分析的效率,稳定性,准确性和灵活性。通过本文结尾处的数字示例说明了所建议程序的潜力。

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