Numerical prediction of dynamic stability loss of a flexible cylindrical shell in a granular medium

P. Szklennik, G. Bąk
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引用次数: 0

Abstract

The paper presents an application of the discrete element method for an analysis of dynamical stability loss of the flexible cylindrical shell section interacting with a model granular medium. The main scope was to investigate the forms of dynamical stability loss, considering finite displacements. The granular medium weight and additional external load transmitted from the surface were considered with different backfill height over the cylindrical shell. Application of a discrete model enables to consider random imperfections in the granular medium structure. It is shown that imperfections of a granular soil structure occurring in a close surrounding of the shell have an essential impact on the shell deformations. Numerical modelling, using the discrete element method, enables to obtain solutions of dynamic interaction by investigating finite two dimensional deformations. Keywords: discrete element method, cylindrical shell, granular medium, stability
弹性圆柱壳在颗粒介质中动态稳定性损失的数值预测
本文应用离散元法分析了弹性圆柱壳截面与模型颗粒介质相互作用时的动力稳定性损失。研究的主要范围是在考虑有限位移的情况下研究动力稳定性损失的形式。考虑了圆柱壳上不同回填高度的颗粒介质重量和表面传递的附加外载荷。离散模型的应用可以考虑颗粒介质结构中的随机缺陷。研究结果表明,颗粒土结构的缺陷对壳体的变形有重要的影响。数值模拟采用离散元法,通过研究有限的二维变形,可以得到动力相互作用的解。关键词:离散元法,圆柱壳,颗粒介质,稳定性
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