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A unified scaled boundary finite element method for transient two-dimensional vibro-acoustic analysis of plate-like structures

机译:板状结构瞬态二维振动声波分析的统一尺度边界有限元方法

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摘要

This paper develops a unified and efficient simulation technique based on the scaled boundary finite element method (SBFEM) for transient structural-acoustic problems in two dimensions. The structural component can be an assembly of thin to moderately thick unidirectional plates. Each of them is treated as a plane strain problem and the principle of virtual work involving the inertial contribution is applied to derive the scaled boundary finite element equation. Only the longitudinal dimension is discretized with line elements and the solution through the thickness is expressed analytically as a Pade expansion. A variable transformation process together with certain structural assumptions leads to the static stiffness and mass matrices. The acoustic field can be a semi-infinite region, which is first divided by an artificial boundary into a near field and an exterior domain. The former is analyzed using the improved continued-fraction approach and the latter is modeled by the improved doubly-asymptotic open boundary. These formulations are based on velocity potential and established consistently in the SBFEM framework. High-order spectral elements are employed for both the structural and acoustic domains, to which independent discretization schemes are applied. Numerical examples are presented to demonstrate the excellent performances of the proposed technique. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文基于尺度边界有限元方法(SBFEM),针对二维瞬态结构声学问题,开发了一种统一,高效的仿真技术。结构部件可以是薄到中厚的单向板的组件。将它们中的每一个都视为平面应变问题,并应用涉及惯性贡献的虚拟功原理来推导比例边界有限元方程。仅纵向尺寸用线元离散,并且厚度方向上的溶液解析表示为Pade展开。变量转换过程以及某些结构假设会导致静态刚度和质量矩阵。声场可以是半无限区域,首先通过人工边界将其划分为近场和外部区域。使用改进的连续分数方法对前者进行分析,而使用改进的双渐近开放边界对后者进行建模。这些公式基于速度势,并在SBFEM框架中始终如一地建立。高阶频谱元素用于结构域和声学域,并对其应用独立的离散化方案。数值算例表明了所提出技术的卓越性能。 (C)2018 Elsevier Ltd.保留所有权利。

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