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首页> 外文期刊>Journal of Sound and Vibration >Stochastic finite element method for random harmonic analysis of composite plates with uncertain modal damping parameters
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Stochastic finite element method for random harmonic analysis of composite plates with uncertain modal damping parameters

机译:具有不确定模态阻尼参数的复合板随机谐波分析随机有限元方法

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Damping parameters of fiber-reinforced composite possess significant uncertainty due to the structural complexity of such materials. Considering the parameters as random variables, this paper uses the generalized polynomial chaos (gPC) expansion to capture the uncertainty in the damping and frequency response function of composite plate structures. A spectral stochastic finite element formulation for damped vibration analysis of laminate plates is employed. Experimental modal data for samples of plates is used to identify and realize the range and probability distributions of uncertain damping parameters. The constructed gPC expansions for the uncertain parameters are used as inputs to a deterministic finite element model to realize random frequency responses on a few numbers of collocation points generated in random space. The realizations then are employed to estimate the unknown deterministic functions of the gPC expansion approximating the responses. Employing modal superposition method to solve harmonic analysis problem yields an efficient sparse gPC expansion representing the responses. The results show while the responses are influenced by the damping uncertainties at the mid and high frequency ranges, the impact in low frequency modes can be safely ignored. Utilizing a few random collocation points, the method indicates also a very good agreement compared to the sampling-based Monte Carlo simulations with large number of realizations. As the deterministic finite element model serves as black-box solver, the procedure can be efficiently adopted to complex structural systems with uncertain parameters in terms of computational time. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于这种材料的结构复杂性,纤维增强复合材料的阻尼参数具有显着的不确定性。将参数视为随机变量,本文采用广义多项式混沌(GPC)扩展来捕获复合板结构的阻尼和频率响应功能的不确定性。采用用于层压板的阻尼振动分析的光谱随机有限元制剂。板式样品的实验模态数据用于识别和实现不确定阻尼参数的范围和概率分布。不确定参数的构建GPC扩展被用作确定性有限元模型的输入,以实现在随机空间中产生的几个串联的搭配点上的随机频率响应。然后,用于估计近似响应的GPC扩展的未知确定性函数的实现。采用模态叠加方法来解决谐波分析问题,产生代表响应的有效稀疏GPC扩展。结果表明,响应受中高频范围阻尼不确定性的影响,可以安全地忽略低频模式的影响。利用少数随机搭配点,该方法也表示与具有大量实现的采样的蒙特卡罗模拟相比,这也表示非常良好的一致性。当确定性有限元模型用作黑匣子求解器时,可以在计算时间方面具有不确定的参数的复杂结构系统可以有效地采用该程序。 (c)2017 Elsevier Ltd.保留所有权利。

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