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首页> 外文期刊>The Journal of the Acoustical Society of America >Response variance prediction using transient statistical energy analysis
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Response variance prediction using transient statistical energy analysis

机译:响应方差预测使用瞬态统计能量分析

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摘要

Statistical energy analysis (SEA) is a prominent method for predicting the high frequency response of complex structures under steady loading where the structure is split into subsystems and the subsystem energies are calculated. Since at high frequencies, the dynamic response of nominally identical structures can differ greatly, methods have been developed to predict both the mean and variance of the energy in the subsystems of a system across an ensemble of systems. SEA can be extended to predict the transient response of a system, either to shock or time-varying inputs and is known as transient SEA, although this formulation has so far only been interested in the mean response. In this paper, a method for predicting the variance of the transient response is derived by considering how an individual realisation can deviate from the mean. A matrix differential equation for the covariance of the subsystem energies is derived which is driven by terms representing the variability in the system. These variance terms are provided by assuming that the natural frequencies in each subsystem conform to the Gaussian orthogonal ensemble. The accuracy of the method is investigated both numerically and experimentally using systems involving coupled plates and its limitations are discussed. (C) 2019 Acoustical Society of America.
机译:统计能量分析(SEA)是预测稳定负载下复杂结构的高频响应的突出方法,其中结构被分成子系统,并且计算子系统能量。由于高频,标称相同的结构的动态响应可以很大程度上差异,已经开发了方法以预测系统的系统的子系统中的能量的平均值和方差。宽度可以扩展海来预测系统的瞬态响应,无论是冲击还是时变输入,也被称为瞬态海洋,尽管这项制定已经对平均反应感兴趣。在本文中,通过考虑个人实现如何偏离平均值来导出用于预测瞬态响应方差的方法。导出子系统能量的协方差的矩阵微分方程,其由表示系统中的变异性的术语驱动。通过假设每个子系统中的自然频率符合高斯正交集合来提供这些方差术语。讨论了涉及耦合板的系统数量和实验研究了该方法的准确性及其限制。 (c)2019年声学社会。

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