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A Hybrid Method to Predict the Distribution of Vibro-Acoustic Energy in Complex Built-Up Structures

机译:一种杂交方法,以预测复杂构建结构中振动声能量的分布

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Predicting the distribution of vibro-acoustic energy in complex built-up structures in the mid-to-high frequency regime is often a difficult task because "numerically exact" results obtained by Finite Element Method (FEM) may be of little practical value; the vibro-acoustic response of "identical" structures assembled as part of a manufacturing process is very sensitive to small changes in material parameters and/or variability in the shape of the structure. These differences may lead to large changes in the resonance spectrum and a full (and time expensive) FEM calculation for an individual sample has at best statistical significance. This problem becomes severe in the mid-frequency regime where the high-frequency techniques, such as Statistical Energy Analysis (SEA), are not yet available. Mid-frequency problems usually occur in structures with large variation of local wavelengths and/or characteristic scales. One of the possible ways of solving them is to develop hybrid methods which incorporate both FEM and SEA. The method presented here is based on splitting the whole system into a number of subsystems, which can be treated with either FEM or an SEA approach depending on the local wavelength. The subsystems where the wavelength is of the same order as the characteristic scale are labeled "deterministic" and are treated with FEM. The other subsystems are labeled "stochastic", and their averaged response can be reduced to a weighted random diffuse field correlation function. It is demonstrated that this approach results in an SEA-like set of linear equations which can be solved for the energies in the stochastic subsystems.
机译:预测中高频状态中复杂的内置结构中的振动声能量的分布通常是一项艰巨的任务,因为通过有限元方法(FEM)获得的“数值精确”结果可能很小;作为制造过程的一部分组装的“相同”结构的振动声反应对结构的较小变化和/或结构形状的变化非常敏感。这些差异可能导致谐振频谱的大变化以及个体样本的完整(和时间)有限元计算具有最佳统计学意义。在中频状态下,该问题变得严重,其中高频技术(例如统计能量分析(SEA)尚未使用。中频问题通常发生在具有局部波长和/或特征尺度的大变化的结构中。解决它们的可能方法之一是开发包含FEM和海的杂种方法。这里呈现的方法是基于将整个系统分成多个子系统,这可以根据局部波长用FEM或海方法处理。波长与特征尺度相同的顺序的子系统被标记为“确定性”,并用FEM处理。另一个子系统被标记为“随机”,并且它们的平均响应可以减少到加权随机漫射场相关函数。结果证明,该方法导致海上的线性方程组,其可以用于随机子系统中的能量。

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