首页> 外文会议>International pipeline conference >USE OF DISCRETE ELEMENT MODELING TO CAPTURE THE EFFECT OF BACKFILL PARTICLE SIZE ON THE SOIL RESTRAINTS OF BURIED PIPELINES SUBJECTED TO LATERAL GROUND MOVEMENT
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USE OF DISCRETE ELEMENT MODELING TO CAPTURE THE EFFECT OF BACKFILL PARTICLE SIZE ON THE SOIL RESTRAINTS OF BURIED PIPELINES SUBJECTED TO LATERAL GROUND MOVEMENT

机译:利用离散元模型捕捉反填颗粒尺寸对受侧向地面运动影响的埋藏管道土壤约束的影响

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Geotechnical hazards can be a major cause of damage to pipelines, particularly as a result of unacceptable strains induced in buried pipelines due to permanent ground deformations. The common design philosophy in reducing soil restraint involves taking measures to effectively isolate the pipeline from the anticipated surrounding soil movements. One of the important engineering design considerations in this regard is the selection of suitable trench backfill material(s). Full-scale model tests have revealed that, in addition to the internal friction angle, coarseness of the backfill material is also an important parameter in controlling the lateral soil restraints on the pipes due to ground movements. It can be demonstrated that discrete element approach is suitable to study the effect of particle size on lateral soil loads of buried pipelines subjected to ground movement. This paper describes the outcome from DEM numerical modeling of the response of buried pipelines subjected to lateral ground movements, with a comparison of the findings with experimental results.
机译:岩土工程危害可能是造成管道损坏的主要原因,尤其是由于永久性地面变形而在地下管道中产生不可接受的应变的结果。减少土壤约束的通用设计理念包括采取措施有效地将管道与预期的周围土壤运动隔离开来。在这方面重要的工程设计考虑因素之一是选择合适的沟槽回填材料。全面模型测试表明,除了内部摩擦角之外,回填材料的粗糙度也是控制地面运动引起的管道侧向土壤约束时的重要参数。可以证明,离散元法适用于研究颗粒大小对地面运动下地下管道横向土壤负荷的影响。本文介绍了DEM数值模型对地下管道在侧向地震动作用下的响应的结果,并将结果与​​实验结果进行了比较。

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