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A simplified method for random vibration analysis of structures with random parameters

机译:随机参数的结构随机振动分析的简化方法

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Piezoelectric patches with adapted electrical circuits or viscoelastic dissipative materials are two solutions particularly adapted to reduce vibration of light structures. To accurately design these solutions, it is necessary to describe precisely the dynamical behaviour of the structure. It may quickly become computationally intensive to describe robustly this behaviour for a structure with nonlinear phenomena, such as contact or friction for bolted structures, and uncertain variations of its parameters. The aim of this work is to propose a non-intrusive reduced stochastic method to characterize robustly the vibrational response of a structure with random parameters. Our goal is to characterize the eigenspace of linear systems with dynamic properties considered as random variables. This method is based on a separation of random aspects from deterministic aspects and allows us to estimate the first central moments of each random eigenfrequency with a single deterministic finite elements computation. The method is applied to a frame with several Young's moduli modeled as random variables. This example could be expanded to a bolted structure including piezoelectric devices. The method needs to be enhanced when random eigenvalues are closely spaced. An indicator with no additional computational cost is proposed to characterize the "proximity" of two random eigenvalues.
机译:具有适应性电路或粘弹性耗散材料的压电贴片是两个溶液,特别适于减少光结构的振动。为了准确地设计这些解决方案,有必要准确地描述结构的动态行为。它可能很快被计算到具有非线性现象的结构的强大这种行为,例如用于螺栓结构的接触或摩擦,以及其参数的不确定变化。这项工作的目的是提出一种非侵扰性的减少的随机方法,以表征具有随机参数的结构的振动响应。我们的目标是,用被认为是随机变量的动态属性的线性系统的尖锐系统的特征。该方法基于从确定性方面的随机方面的分离,并且允许我们估计每个随机特征频率的第一中央矩,以单个确定性有限元计算。该方法应用于具有多个作为随机变量建模的几个Moduli的帧。该示例可以扩展到包括压电装置的螺栓结构。当随机特征值紧密间隔时,需要提高该方法。提出了一种没有额外计算成本的指示器,以表征两个随机特征值的“接近”。

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