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A strain energy-based equivalent layer method for the prediction of critical collapse pressure of flexible risers

机译:基于应变能的等效层法预测柔性立管临界坍塌压力

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Flexible risers are being required to be installed in a water depth of over 3000 m for fewer remaining easy-to access oil fields nowadays. Their innermost carcass layers are designed for external pressure resistance since the hydrostatic pressure at such a water depth may cause the collapse failure of flexible risers. Determining a critical collapse pressure for the carcass is of great importance to the whole structural safety of flexible risers. However, the complexity of the carcass profile always makes FE analysis computational intensive. To overcome that problem, the treatment of the interlocked carcass as an equivalent layer is adopted by researchers to accelerate the anti-collapse analyses. This paper presents an equivalent layer method to enable that treatment, which obtains the equivalent properties for the layer through strain energy and membrane stiffness equivalences. The strain energy of the carcass was obtained through FE models and then used in a derived equation set to calculate the geometric and material properties for the equivalent layer. After all the equivalent properties have been determined, the FE model of the equivalent layer was developed to predict the critical pressure of the carcass. The result of prediction was compared with that of the full 3D carcass model as well as the equivalent models that built based on other existing equivalent methods, which showed that the proposed equivalent layer method performs better on predicting the critical pressure of the carcass.
机译:如今,要求在水深超过3000 m的水中安装柔性立管,以减少如今易于使用的剩余油田。它们的最内层胎体设计用于抵抗外部压力,因为在这种水深处的静水压力可能会导致柔性立管的倒塌失败。确定胎体的临界塌陷压力对于柔性立管的整体结构安全至关重要。然而,car体轮廓的复杂性总是使有限元分析需要大量的计算。为了克服这个问题,研究人员采用将联锁的car体作为等效层进行处理,以加快抗塌陷分析的速度。本文提出了一种等效层方法以实现该处理,该等效方法通过应变能和膜刚度等效来获得该层的等效特性。胎体的应变能通过有限元模型获得,然后用于导出的方程组中,以计算等效层的几何和材料特性。确定所有等效特性后,开发等效层的有限元模型来预测胎体的临界压力。将预测结果与完整3D胎体模型以及基于其他现有等效方法建立的等效模型的预测结果进行了比较,这表明所提出的等效层方法在预测胎体的临界压力方面表现更好。

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