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首页> 外文期刊>The Journal of the Acoustical Society of America >Numerical and experimental validation of a hybrid finite element-statistical energy analysis method
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Numerical and experimental validation of a hybrid finite element-statistical energy analysis method

机译:混合有限元-统计能量分析方法的数值和实验验证

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摘要

The finite element (FE) and statistical energy analysis (SEA) methods have, respectively, high and low frequency limitations and there is therefore a broad class of "mid-frequency" vibro-acoustic problems that are not suited to either FE or SEA. A hybrid method combining FE and SEA was recently presented for predicting the steady-state response of vibro-acoustic systems with uncertain properties. The subsystems with long wavelength behavior are modeled deterministically with FE, while the subsystems with short wavelength behavior are modeled statistically with SEA. The method yields the ensemble average response of the system where the uncertainty is confined in the SEA subsystems. This paper briefly summarizes the theory behind the method and presents a number of detailed numerical and experimental validation examples for structure-borne noise transmission. (c) 2007 Acoustical Society of, America.
机译:有限元(FE)和统计能量分析(SEA)方法分别具有高频和低频限制,因此存在一类不适合于FE或SEA的“中频”振动声问题。最近提出了一种结合有限元分析和SEA的混合方法来预测具有不确定属性的振动声系统的稳态响应。具有长波长行为的子系统使用FE确定性建模,而具有短波长行为的子系统则使用SEA统计建模。该方法得出系统的整体平均响应,其中不确定性限制在SEA子系统中。本文简要总结了该方法背后的理论,并提供了许多详细的数值和实验验证实例,用于结构声传输。 (c)2007年美国声学学会。

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