首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >INFLUENCE OF LOW CONFINING PRESSURE IN MODELING OF LATERAL PIPELINE/SOIL INTERACTION IN DENSE SAND
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INFLUENCE OF LOW CONFINING PRESSURE IN MODELING OF LATERAL PIPELINE/SOIL INTERACTION IN DENSE SAND

机译:密实砂中低围压对侧向管道/土壤相互作用模拟的影响

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Buried pipelines are extensively used for transporting water and hydrocarbons. Geohazards and associated ground movements represent a significant threat to pipeline integrity that may result in pipeline damage and potential failure. Safe, economic and reliable operation of pipeline transportation systems is the primary goal of the pipeline operators and regulatory agencies. The pipes are often buried at a shallow depth and therefore the behaviour of soil at low stress level need to be considered for proper modeling of the response of pipelines. In this study, finite element (FE) modeling of pipeline/soil interaction is presented, where the stress-stain behaviour of soil at low stress level is implemented. At first, triaxial test results are simulated to validate the proposed model and numerical techniques. Pipeline/soil interaction in plane strain condition is then simulated for lateral loading. The Arbitrary Lagrangian-Eulerian (ALE) method available in Abaqus/Explicit is used for FE modeling. One of the main advantages of this method is that it can simulate large deformation behaviour. The variation of non-dimensional lateral force with non-dimensional displacement is examined for different depth of embedment of pipeline and soil conditions. Finally, shear band formation in soil due to lateral movement of the pipe is presented.
机译:地下管道广泛用于运输水和碳氢化合物。地质灾害和相关的地面运动对管道完整性构成重大威胁,可能导致管道损坏和潜在故障。管道运输系统的安全,经济和可靠的运行是管道运营商和监管机构的首要目标。管道通常埋在较浅的深度,因此对于管道响应的正确建模,需要考虑土壤在低应力水平下的行为。在这项研究中,提出了管道/土壤相互作用的有限元(FE)模型,其中实现了低应力水平下土壤的应力-污渍行为。首先,模拟三轴测试结果以验证所提出的模型和数值技术。然后,模拟了平面应变条件下的管道/土壤相互作用,以进行侧向荷载。 Abaqus / Explicit中可用的任意Lagrangian-Eulerian(ALE)方法用于有限元建模。该方法的主要优点之一是它可以模拟大变形行为。研究了不同埋入深度的管道和土壤条件下,无量纲横向力随无量纲位移的变化。最后,介绍了由于管道的横向运动而在土壤中形成的剪切带。

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