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Stochastic interval analysis for structural natural frequencies based on stochastic hybrid perturbation edge-based smoothing finite element method

机译:基于随机混合扰动边沿平滑有限元的结构固有频率随机区间分析

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摘要

Realistically calculating of natural frequencies is crucial for studying dynamical characteristics of structures in engineering. In this paper, the gradient smoothing technique is first applied into the conventional finite element method (named ES-FEM), to improve the accuracy of the deterministic calculation of natural frequencies. Then, the hybrid random and interval uncertain parameters are introduced into the proposed ES-FEM based on hybrid stochastic and interval perturbation method. Expressions for the mean value and variance of natural frequencies are derived by combining the random interval perturbation method and the random interval moment method. The upper and lower bounds of mean value and variance of natural frequencies are calculated based on hybrid perturbation vertex method. The proposed method (denoted ESHPVM) is compared with the different methods. The high accuracy and efficiency of the proposed methods are verified by two numerical examples.
机译:实际计算固有频率对于研究工程中结构的动力特性至关重要。本文将梯度平滑技术首先应用于常规有限元方法(称为ES-FEM),以提高固有频率确定性计算的准确性。然后,基于混合随机和区间摄动方法,将混合随机和区间不确定参数引入到拟议的ES-FEM中。通过结合随机间隔摄动法和随机间隔矩法,推导出固有频率的平均值和方差的表达式。根据混合摄动顶点法计算出平均值的上下限和自然频率的方差。将该方法(称为ESHPVM)与不同方法进行了比较。通过两个数值例子验证了所提方法的高精度和高效率。

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