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Numerical Simulation of Reverberant Acoustic Field Environment Test Based on Reciprocity Theorem

机译:基于互易定理的混响声场环境测试的数值模拟

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The aim of this paper is to present the formulation and application of the coupled structural finite element and acoustic boundary element algorithm to analysis the structure subjected to noise-induced vibration from acoustic loads experienced during launch environment. Firstly, the traditional numerical simulation of a reverberant field as a launch acoustic environment was introduced. Secondly, based on the reciprocity theorem used in coupled FE-BE model, as well as the principle of stochastic analysis, the output response power spectrum density of the coupling model subjected to reverberant environment can be calculate by the mathematical formulation deduced. In order to verify the accuracy and efficiency of the proposed method, the simulation results based on the reciprocity theorem were compared with the solutions obtained using the traditional method. Good agreement results show that using the reciprocity theorem to analyze reverberant acoustic field environment is feasible and effective.
机译:本文的目的是提出耦合结构有限元和声边界元算法的公式化和应用,以分析在发射环境中经历的声载荷引起的噪声引起的振动的结构。首先,介绍了作为回声环境的混响场的传统数值模拟。其次,基于耦合FE-BE模型中使用的互易性定理,以及随机分析的原理,可以通过推导的数学公式计算出混响环境下耦合模型的输出响应功率谱密度。为了验证所提方法的准确性和有效性,将基于互易性定理的仿真结果与传统方法的求解结果进行了比较。良好的一致性结果表明,使用互易定理分析混响声场环境是可行和有效的。

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