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A stabilized explicit approach to efficiently analyse wave propagation through coupled fluid-structure models

机译:通过耦合的流固模型有效分析波传播的稳定的显式方法

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摘要

In this paper, a stabilized, locally defined, explicit approach is considered to analyse coupled acoustic-elastic wave propagation models. In this sense, a modified central difference method is applied, which performs adapting itself along the solution process, considering the properties and results of the model, as well as the relations between the adopted temporal and spatial discretizations. The proposed technique enables stabilized decoupled analyses, allowing each subdomain of the coupled model to be handled separately, without considering stability restrictions for the temporal discretization, providing a very versatile and efficient methodology. In addition, the new approach is designed as a single-solve framework based on reduced systems of equations, which further greatly improves the efficiency of the technique. The new method enables adaptive algorithmic dissipation in the higher modes and it is highly accurate, simple to implement and entirely automatized, requiring no decision or expertise from the user. Numerical results are presented at the end of the manuscript, illustrating the performance and effectiveness of the new approach. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,考虑了一种稳定的,局部定义的显式方法来分析耦合的声弹波传播模型。从这个意义上讲,将应用一种改进的中心差分方法,该方法会在求解过程中进行自我调整,同时考虑模型的属性和结果以及所采用的时间离散和空间离散之间的关系。所提出的技术使得能够进行稳定的去耦分析,从而允许分别处理耦合模型的每个子域,而无需考虑时间离散的稳定性限制,从而提供了一种非常通用且有效的方法。此外,新方法被设计为基于简化方程组的单求解框架,从而进一步大大提高了该技术的效率。该新方法可以在较高模式下实现自适应算法耗散,并且精度高,易于实现且完全自动化,无需用户做出任何决定或专业知识。数值结果显示在手稿的末尾,说明了新方法的性能和有效性。 (C)2019 Elsevier B.V.保留所有权利。

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