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Mechanical analysis of un-bonded flexible pipe tensile armor under combined loads

机译:组合负载下未粘接柔性管拉伸铠装的机械分析

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摘要

Marine un-bonded flexible pipes wrapped with fiber-reinforced polymer are essential in offshore oil and gas exploration because of their high flexibility and reliability. These flexible pipes may be subjected to tensile loads, compressive loads, and torsional loads, causing the armor wires to undergo large displacements that may result in failure. This study develops a nonlinear simplified finite element model to investigate the mechanical behavior of flexible pipe armor wires under various types of load. The stiffness change rule of flexible pipe armor wires is obtained from numerical simulations of the flexible pipe tensile armor layer under combined loads. The results reveal that the flexible pipe stiffness under combined loads varies significantly from that under single loads, and the combination of different load types can either increase or decrease the stiffness. This study provides essential reference data for the further design, fabrication, and application of flexible pipes.
机译:由于其具有高灵活性和可靠性,含有纤维增强聚合物的海洋未粘结的柔性管是在海上石油和天然气勘探中所必需的。 这些柔性管可以经受拉伸载荷,压缩载荷和扭转载荷,使装甲导线经历可能导致故障的大型位移。 该研究开发了非线性简化有限元模型,以研究各种类型的载荷柔性管铠装线的机械特性。 柔性管铠装线的刚度变化规律是从组合负载下柔性管拉伸铠装层的数值模拟获得的。 结果表明,在单载荷下,组合负载下的柔性管刚度显着变化,不同负载类型的组合可以增加或减少刚度。 本研究提供了柔性管的进一步设计,制造和应用的基本参考数据。

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