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Stochastic finite element analysis of cylindrical shells with random initial imperfections

机译:随机初始缺陷的圆柱壳随机有限元分析

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Stochastic finite element analysis of shells is performed using the spectral representation method for the description of the random fields in conjunction with the local average method for the formulation of the stochastic stiffness matrix of the elements. A stochastic formulation of the non-linear TRIC facet triangular shell element is implemented for the stability analysis of cylindrical panels with random initial imperfections. The imperfections are described as a two-dimensional uni-variate homogeneous stochastic field. The elastic modulus and the shell thickness are also described as two-dimensional uni-variate homogeneous stochastic fields. The variability of the limit load of the cylindrical panel is then computed using the Monte Carlo Simulation. Useful conclusions for the buckling behavior of cylindrical panels with random initial imperfections are derived from the numerical tests presented in this paper. These tests also demonstrate the applicability of the proposed methodology in realistic problems.
机译:使用光谱表示方法对壳体的随机有限元分析,用于结合局部平均方法的用于配制元素的随机刚度矩阵的局部平均方法来执行。为具有随机初始缺陷的圆柱形面板的稳定性分析来实现非线性三谱面三角形壳元件的随机配方。缺陷被描述为二维Uni-变型均匀随机场。弹性模量和壳体厚度也被描述为二维单变形随机地区。然后使用Monte Carlo仿真计算圆柱形面板的极限载荷的可变性。对于随机初始缺陷的圆柱形面板屈曲行为的有用结论来自本文中呈现的数值测试。这些测试还证明了所提出的方法在现实问题中的适用性。

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