首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >A NOVEL FATIGUE STRESS MODEL OF POWER PHASES AND COATED TUBES IN DEEP-WATER POWER CABLES, UMBILICALS, AND POWER UMBILICALS
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A NOVEL FATIGUE STRESS MODEL OF POWER PHASES AND COATED TUBES IN DEEP-WATER POWER CABLES, UMBILICALS, AND POWER UMBILICALS

机译:深水电缆,脐带和脐带电阶段和涂层管的新型疲劳应力模型

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Short fatigue life is a significant challenge for power cables, umbilicals, and power umbilicals to be installed in ultra-deep and hyper-deep waters. This paper presents a novel model for calculating fatigue stresses in conductors of power phases and in tubes with coating. The novelty is that the axial displacement of the conductor within the electric insulation system, or the tube within the sheath, is taken into consideration. For a real-life power cable designed for 2 300 m water depth, the novel model gives a reduction in fatigue stress of 69% compared to the traditional resultant-based approach for oscillations smaller than the slip curvature. This corresponds to a reduction in fatigue damage of more than 99%.
机译:短暂的疲劳生活是电缆,脐带和电源脐带的重大挑战,以安装在超深层和超深水中。本文介绍了一种新型模型,用于计算功率阶段导体中的疲劳应力和涂层管中的管。新颖性是考虑电绝缘系统内导体的轴向位移或护套内的管内。对于设计200米水深的现实寿命电力电缆,与基于传统的基于结果的振荡的方法相比,新颖的模型降低了69%的疲劳胁迫69%,用于振荡比滑动曲率小。这相当于疲劳损伤的降低超过99%。

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