首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >VALIDATION OF A 3-DIMENSIONAL FINITE ELEMENT ANALYSIS MODEL OF A DEEP WATER STEEL TUBE UMBILICAL IN COMBINED TENSION AND CYCLIC BENDING
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VALIDATION OF A 3-DIMENSIONAL FINITE ELEMENT ANALYSIS MODEL OF A DEEP WATER STEEL TUBE UMBILICAL IN COMBINED TENSION AND CYCLIC BENDING

机译:深水管张拉与循环弯曲联合的三维有限元分析模型的验证

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This paper focuses upon validation of the 3-D FEA model for cyclic bending under tension load case. An important aspect of accurately modelling the behaviour is the complex stick, partial slip and full slip behaviour of the internal components. Particular attention is paid to the resisting moment resulting from internal friction, known as the friction moment. The effect of increasing tension on the friction moment is studied. The kinematics of sliding are compared to analytical models developed for helically wound structures, such as flexible pipes, and show a very good correlation that confirms the accuracy of the model. Also, the mean axial strain of the steel tubes due to the friction induced by this sliding is highlighted. The hysteretic curves of the axial strain in steel tubes subjected to cyclic bending under tension are derived and validated against full scale experimental data.
机译:本文着重于3-D FEA模型在拉伸载荷情况下循环弯曲的验证。精确建模行为的一个重要方面是内部组件的复杂粘滞,部分打滑和完全打滑行为。特别要注意由内部摩擦引起的抵抗力矩,称为摩擦力矩。研究了增加张力对摩擦力矩的影响。将滑动的运动学与针对螺旋缠绕结构(例如柔性管)开发的分析模型进行比较,并显示出很好的相关性,从而确认了模型的准确性。另外,突出显示了由于该滑动引起的摩擦而引起的钢管的平均轴向应变。得出了在拉伸作用下承受周期性弯曲的钢管轴向应变的滞后曲线,并针对完整的实验数据进行了验证。

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