首页> 外文会议>OMAE2010;International conference on ocean, offshore and arctic engineering >NUMERICAL INVESTIGATION ON BEARING CAPACITY OF A PIPELINE ON CLAYEY SOILS
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NUMERICAL INVESTIGATION ON BEARING CAPACITY OF A PIPELINE ON CLAYEY SOILS

机译:粘性土上管道承载力的数值研究

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The bearing capacity of a pipeline foundation is crucial for the pipeline stability design. It is usually inappropriate to analyze the bearing capacity for the pipeline with special circular section directly by employing the theory for conventional rectangular strip footings. In this study, the ultimate loads of the pipeline on clayey soils are investigated numerically.A plane-strain finite element model is proposed to simulate the quasi-static process of the pipeline penetrating into the soil, in which the adaptive-grid technique and the 'contact-pair' algorithm are employed, and the Drucker-Prager constitutive model is used for modeling the soil plasticity. Based on the proposed numerical model, the development of soil plastic zone and the incremental-displacement vector field beneath the pipeline are examined numerically. It is indicated that, according to the obtained pipeline vertical load-displacement curves, concurrently referring to the plastic strain field and/or the soil incremental-displacement vector field, the shear failure type (e.g., general shear failure, punching shear failure) and the collapse loads can be thereby determined. The present numerical results match well with the analytical solutions of slip-line theory in plasticity mechanics.
机译:管道基础的承载力对于管道稳定性设计至关重要。直接采用常规矩形条形基础理论来分析具有特殊圆形截面的管道的承载能力通常是不合适的。在这项研究中,对黏土上管道的极限载荷进行了数值研究。 提出了一种平面应变有限元模型来模拟管道渗入土壤的准静态过程,其中采用了自适应网格技术和“接触对”算法,并采用了Drucker-Prager本构模型。用于模拟土壤可塑性。基于所提出的数值模型,对管道下方土壤塑性区的发展和增量位移矢量场进行了数值研究。结果表明,根据获得的管道垂直荷载-位移曲线,同时参考塑性应变场和/或土壤增量位移矢量场,剪切破坏类型(如一般剪切破坏,冲剪剪切破坏)和由此可以确定坍塌载荷。目前的数值结果与塑性力学中滑移线理论的解析解非常吻合。

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