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Axi-symmetric dynamic finite element analysis of cylindrical shells with initial distortion

机译:初始变形圆柱壳的轴对称动态有限元分析

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This paper develops an axi-symmetric approach to dynamic finite element analysis of thin-walled cylinders that permits the inclusion of initial bi-symmetric radial distortion of the cylinder. The motivation behind this development is to allow simplified analysis of thin-walled piles during installation. Initial out-of-roundness of the cross-section of such piles may grow during the installation process. Full three-dimensional dynamic simulation of such problems is prohibitively expensive. This paper takes advantage of the observed bi-symmetric tendency of the cross-sectional distortion of thin-walled piles. A finite element model is developed which uses a Fourier expansion of the displacements in the circumferential direction, while permitting an initial out-of-roundness. The performance of this simplified model is compared with full three-dimensional finite element analysis, and is shown to represent the dynamic behaviour of the distorted cylindrical shell very well.
机译:本文开发了一种轴对称方法,用于薄壁圆柱体的动态有限元分析,该方法允许包含圆柱体的初始双对称径向变形。这种发展背后的动机是允许在安装过程中简化薄壁桩的分析。在安装过程中,此类桩的横截面的初始不圆度可能会增加。此类问题的完整三维动态仿真非常昂贵。本文利用了观察到的薄壁桩截面变形的双对称趋势。开发了一种有限元模型,该模型在周向上使用位移的傅立叶展开,同时允许初始的不圆度。将该简化模型的性能与完整的三维有限元分析进行了比较,结果表明该模型很好地表示了扭曲的圆柱壳的动态行为。

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