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IMPLEMENTATION OF NON-REFLECTING BOUNDARIES IN A SPACE-TIME FINITE ELEMENT METHOD FOR STRUCTURAL ACOUSTICS

机译:结构声学时空有限元法中的非反映边界的实施

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This paper examines the development and implementation of second-order accurate non-reflecting boundary conditions in a time-discontinuous Galerkin finite element method for structural acoustics in unbounded domains. The formulation is based on a multi-field space-time variational equation for both the acoustic fluid and elastic solid together with their interaction. This approach to the modeling of the temporal variables allows for the consistent use of high-order accurate adaptive solution strategies for unstructured finite elements in both time and space. An important feature of the method is the incorporation of temporal jump operators which allow for discretizations that are discontinuous in time. Two alternative approaches are examined for implementing non-reflecting boundaries within a time-discontinuous Galerkin finite element method: direct implementation of the exterior acoustic impedance through a weighted variational equation in time and space, and indirectly through a decomposition into two equations involving an auxiliary variable defined on the non-reflecting boundary. The idea for the indirect approach was originally developed in (Kallivokas, 1991) in the context of a standard semi-discrete formulation. Extensions to general convex boundaries are also discussed - numerical results are presented for acoustic scattering from an elongated structure using a first-order accurate boundary condition applied to an elliptical absorbing boundary.
机译:本文介绍了在无界域的结构声学的时间 - 不连续的Galerkin有限元方法中的开发和实施了二阶准确的非反映边界条件。该配方基于用于声学流体和弹性固体的多场空间变分方程以及它们的相互作用。这种对时间变量建模的方法允许在时间和空间中的非结构化有限元的一致使用高阶准确的自适应解决方案策略。该方法的一个重要特征是纳入时间跳转运算符,其允许在时间不连续的离散化。检查两种替代方法,用于在时间不连续的Galerkin有限元方法中实现非反映边界:通过时间和空间的加权变化方程直接实现外部声阻抗,并间接地通过分解成涉及辅助变量的两个方程在非反映边界上定义。间接方法的想法最初是在标准半离散制定的背景下(Kallivokas,1991)开发的。还讨论了通用凸边界的延伸 - 使用施加到椭圆形吸收边界的一阶精度边界条件,向数值结果用于从细长结构的声学散射。

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