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Post-buckling nonlinear static and dynamical analyses of uncertain cylindrical shells and experimental validation

机译:不确定圆柱壳的屈曲后非线性静动力分析和实验验证

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The paper presents a complete experimental validation of an advanced computational methodology adapted to the nonlinear post-buckling analysis of geometrically nonlinear structures in presence of uncertainty. A mean nonlinear reduced-order computational model is first obtained using an adapted projection basis. The stochastic nonlinear computational model is then constructed as a function of a scalar dispersion parameter, which has to be identified with respect to the nonlinear static experimental response of a very thin cylindrical shell submitted to a static shear load. The identified stochastic computational model is finally used for predicting the nonlinear dynamical post-buckling behavior of the structure submitted to a stochastic ground motion.
机译:本文介绍了一种高级计算方法的完整实验验证,该方法适用于存在不确定性的几何非线性结构的非线性屈曲后分析。首先使用自适应投影基础获得平均非线性降阶计算模型。然后,根据标量色散参数构造随机非线性计算模型,必须根据非常薄的圆柱壳承受静态剪切载荷的非线性静态实验响应来确定该参数。最终,所识别的随机计算模型被用于预测经受随机地面运动的结构的非线性动力后屈曲行为。

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