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Inelastic stability of liners of cylindrical conduits with local imperfection under external pressure

机译:在外部压力下具有局部缺陷的圆柱形导管衬套的非弹性稳定性

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摘要

Liners are typically used to prevent leakage from large-diameter conduits (e.g., sewage pipelines, shafts, tunnels, or penstocks) to their surroundings. The liner is usually designed to resist buckling from external grout pressure during installation or from the external water pressure or internal negative pressure when the conduit is dewatered quickly for inspection and/or maintenance. This study uses the finite element method to investigate the inelastic stability of cylindrical liners with localized wavy imperfections. The liner's material is assumed to follow elastic-perfectly-plastic stress-strain relationship. The effects of the different geometrical parameters of the liner on its stability are studied. This is in addition to the effect of the liner's material properties (Young's modulus, Poisson's ratio, and yield stress) on its buckling pressure. Results of the study are expected to contribute to the understanding of the mechanical behavior of locally imperfect cylindrical liners when subjected to external uniform pressure, and also in the improvement of the associated design standards.
机译:衬里通常用于防止大直径导管(例如,污水管道,竖井,隧道或压力管道)泄漏到周围。衬里通常设计成在安装过程中能抵抗因外部灌浆压力而产生的屈曲,或因导管进行快速脱水以进行检查和/或维护而不受外部水压或内部负压的影响。这项研究使用有限元方法来研究具有局部波浪状缺陷的圆柱衬管的非弹性稳定性。假定衬套的材料遵循弹性-完全塑性应力-应变关系。研究了衬垫的不同几何参数对其稳定性的影响。这还不包括衬管的材料特性(杨氏模量,泊松比和屈服应力)对其屈曲压力的影响。预期研究结果将有助于理解局部不完善的圆柱形衬套在受到外部均匀压力时的机械性能,并有助于改进相关的设计标准。

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