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Instability of mechanically lined pipelines under large deformation

机译:机械衬砌管道在大变形下的不稳定性

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Mechanically lined pipe consists of a load bearing carbon steel outer pipe with a thin corrosion resistant alloy (CRA) liner and is a proven and economical solution for oil and gas pipelines. The bond between the two pipes is purely mechanical and under large bending loads plastic deformation of the liner results in non-reversible liner wrinkling. This wrinkling impedes flow and significantly reduces the performance of the pipeline. This study uses non-linear finite element techniques to describe the wrinkling of lined pipe under pure bending and examines the effect of initial material stresses and contact surface friction. This model is then used to test a design failure criterion equation of DNV GL for design of mechanically lined pipelines. In single directional bending to failure the DNV GL failure criterion proves to be conservative in predicting the onset of liner wrinkling for all initial conditions and pipe geometries tested. Under low cycle repeated loading the safety factor in the predicted DNV GL failure curvature is sensitive to the magnitude of initial pre-stress. The results presented herein provide evidence that the magmtude of initial material pre-stress in mechanically lined pipe needs to be considered in designing the CRA lined pipeline even at relatively low curvatures.
机译:机械衬里的管道由带有薄耐腐蚀合金(CRA)衬里的承重碳钢外管组成,是石油和天然气管道的公认且经济的解决方案。两根管道之间的结合是纯机械的,并且在大的弯曲载荷下,衬套的塑性变形会导致不可逆的衬套起皱。这种起皱阻碍了流量,并显着降低了管道的性能。这项研究使用非线性有限元技术来描述内衬管在纯弯曲下的起皱现象,并研究初始材料应力和接触表面摩擦的影响。然后,该模型用于测试DNV GL的设计失效准则方程式,以用于机械衬砌管道的设计。在单向弯曲破坏中,DNV GL破坏准则在预测所有初始条件和所测试管道几何形状的衬里起皱的开始方面是保守的。在低周反复载荷下,预测的DNV GL破坏曲率中的安全系数对初始预应力的大小敏感。本文提供的结果提供了证据,即使在相对较低的曲率下,在设计CRA衬里管道时也需要考虑机械衬里管道中初始材料预应力的巨大影响。

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