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Fatigue damage study of helical wires in catenary unbonded flexible riser near touchdown point

机译:接触点附近悬链无粘结柔性立管中的螺旋线疲劳损伤研究

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摘要

This study presents an analytical model of flexible riser and implements it into finiteelement software ABAQUS to investigate the fatigue damage of helical wires near touchdown point (TDP). In the analytical model, the interlayer contact pressure is simulated by setting up springs between adjacent interlayers. The spring stiffness is iteratively updated based on the interlayer penetration and separation conditions in the axisymmetric analysis. During the bending behavior, the axial stress of helical wire along the circumferential direction is traced to determine whether the axial force overcomes the interlayer friction force and thus lead to sliding. Based on the experimental data in the literature, the model is verified. The present study implements this model into ABAQUS to carry out the global analysis of the catenary flexible riser. In the global analysis, the riser-seabed interaction is simulated by using a hysteretic seabed model in the literature. The effect of the seabed stiffness and interlayer friction on the fatigue damage of helical wire near touchdown point is parametrically studied, and the results indicate that these two aspects significantly affect the helical wire fatigue damage, and the sliding of helical wires should be taken into account in the global analysis for accurate prediction of fatigue damage. Meanwhile, different from the steel catenary riser, high seabed stiffness may not correspond to high fatigue damage of helical wires.
机译:这项研究提出了一种挠性冒口的分析模型,并将其应用到有限元软件ABAQUS中,以研究触地点(TDP)附近的螺旋线的疲劳损伤。在分析模型中,通过在相邻夹层之间设置弹簧来模拟夹层接触压力。在轴对称分析中,基于层间穿透和分离条件迭代更新弹簧刚度。在弯曲行为期间,跟踪螺旋线沿圆周方向的轴向应力,以确定轴向力是否克服了层间摩擦力并因此导致滑动。基于文献中的实验数据,对模型进行了验证。本研究将这种模型应用到ABAQUS中,以对悬链柔性立管进行全局分析。在整体分析中,在文献中使用滞后海床模型模拟了立管与海床的相互作用。通过参数研究了海床刚度和层间摩擦力对触地点附近螺旋线疲劳损伤的影响,结果表明这两个方面对螺旋线疲劳损伤有显着影响,应考虑螺旋线的滑动在全球分析中准确预测疲劳损伤。同时,不同于钢制悬链立管,高的海底刚度可能并不对应于螺旋线的高疲劳损伤。

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