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A 3-DIMENTIONAL CONTINUUM ALE MODEL FOR SOIL-PIPE INTERACTION

机译:土-管相互作用的三维连续ALE模型

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摘要

Soil-pipe interactions when large ground movements occur are an important consideration in pipeline design, route selection, guide monitoring and reduce the risk of damage or failure. Large ground movement can be caused by slope failures, faulting, landslides and seismic activities. Such conditions induce large deformations of both the soil and pipe. Analyses of such behavior pose a significant challenge to capabilities of standard finite elements as the capability to analyze large deformations is required. This requirement is difficult to meet for Lagrangian-based code. New developments using ALE methods make it possible to determine soil and pipe deformation confidently for large displacements.rnThis paper describes a study performed to investigate the mechanical behavior of a pipeline subjected to large soil movement. A 3D continuum modeling using an ALE (Arbitrary Eulerian Lagrangian) formulation was developed and run using LS-DYNA. The results are compared with published experimental data of large-scale test to verify the numerical analysis method. The analysis is further extended to analyze the soil-pipe interaction under permanent ground deformation such as those associated with surface fault rupture and landslides.
机译:发生大的地面运动时,土管相互作用是管道设计,路线选择,引导监测以及降低损坏或故障风险的重要考虑因素。较大的地面运动可能是由斜坡破坏,断层,滑坡和地震活动引起的。这样的条件会引起土壤和管道的大变形。对这种行为的分析对标准有限元的功能提出了重大挑战,因为需要分析大变形的能力。对于基于拉格朗日的代码,很难满足此要求。使用ALE方法的新进展使确定大位移的土壤和管道变形成为可能。rnn本文描述了一项研究,以研究在大土壤运动下管道的力学行为。开发了使用ALE(任意欧拉拉格朗日)公式的3D连续体建模,并使用LS-DYNA进行了建模。将结果与已发表的大规模测试实验数据进行比较,以验证数值分析方法。该分析进一步扩展到分析永久性地面变形(例如与表面断层破裂和滑坡相关的地面变形)下的土管相互作用。

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  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    BMT Fleet Technology Limited, 311 Legget Drive Kanata, Ontario, K2K 1Z8 Canada;

    BMT Fleet Technology Limited, 311 Legget Drive Kanata, Ontario, K2K1Z8 Canada;

    Trans Canada Calgary, Alberta, Canada;

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