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INCREASING WATER DEPTH WINDOW FOR MOORED SUBSEA STRUCTURES AND OPERATIONS WITH LOW WEIGHT HYBRID ROPES

机译:低重量混合绳索的锚固式浅浮雕结构和作业的水深窗增加

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This paper introduces new hybrid wire rope concepts by combining steel wire and UHMWPE fibers. These novel High Modulus Hybrid Ropes (HMHR) result in enhanced strength and significant reduction of linear weight compared to steel wire rope (SWR) of equivalent constructions. Compared to fiber ropes (FR) this new family of ropes shows increased protection against crushing, fretting and wear. In-house and independent laboratory tests showed increased breaking load / weight advantages compared to SWR, while also revealing improved bending fatigue resistance. Additionally, test results show similar axial stiffness and torque performance to SWR, which can be modeled by using analytical algorithms. Furthermore creep rate of these ropes is comparable to that of SWR. Finally, the authors discuss the expected performance of these ropes working in deep waters and under high load conditions in offshore and subsea systems. Additional work required to validate and introduce these ropes in the industry is addressed as well.
机译:本文通过将钢丝和超高分子量聚乙烯纤维相结合,介绍了新的混合钢丝绳概念。与等效构造的钢丝绳(SWR)相比,这些新颖的高模量混合绳索(HMHR)可以提高强度并显着降低线重。与纤维绳(FR)相比,这个新的绳系列显示出更高的抗压,抗微动和抗磨损保护。内部和独立实验室的测试表明,与SWR相比,其增加的断裂载荷/重量优势更明显,同时还具有更高的抗弯曲疲劳性。此外,测试结果显示出与SWR类似的轴向刚度和扭矩性能,可以使用解析算法对其进行建模。此外,这些绳索的蠕变速率与SWR相当。最后,作者讨论了这些绳索在深水和高负荷条件下在近海和海底系统中工作的预期性能。还讨论了在行业中验证和引入这些绳索所需的其他工作。

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