深海采矿过程中双阶梯电缆运动边界的动力响应和鲁棒性

IF 2.3 3区 工程技术 Q2 ENGINEERING, MARINE
Yilun Li , Shuangxi Guo , Yucheng Guo , Xiaoqi Yu , Weimin Chen , Jixiang Song
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引用次数: 0

摘要

随着深海油气勘探开发和多金属结核硫化物开采向超深水方向发展,提出了一些适用于超深水的海底电缆结构的创新概念,如阶梯电缆、混合电缆和双阶梯电缆。对于结构复杂的深水电缆,由于其结构特性的不均匀性,结构响应变得更加复杂。由于沿索长分布的浮力模块可能会引入更多的局部弯曲段。此外,还应考虑顶船和底矿车运动引起的移动边界的影响。本研究通过有限元模拟与水动力模型相结合,建立了超深水电缆动力响应分析方法。然后计算了顶船和底采车移动引起的双阶梯索的轴向拉力和位移随整体构型变化的响应。采用基于贝塞尔函数的轴向变化结构波传播理论,全面考察了索响应过程中的波传播行为,分析了非均匀结构特性对索响应和波传播的影响。结果表明,所设计的双阶梯索在动态响应过程中能够提供合适的结构形式,具有良好的柔度性能,能够有效缓冲移动边界激励引起的响应。最后,我们发现响应的时空演化呈现出一些有趣的现象,如轴向非均匀特征导致响应振幅和波长的非单调变化,并且由于浮力模块的分布,在低张力区域出现局部峰值,以及轴向变化和不连续的结构特性。并且驻波和行波都存在明显的混合效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic responses and robustness performance to moving boundary of double-stepped cable during deep-sea mining

As the exploration and exploitation of deep-sea oil and gas, along with promising polymetallic nodule&sulfides mining, have been developing toward ultra-deep waters, some innovative concepts of marine cable configuration suitable for ultra-deepwater are proposed, such as stepped cable, hybrid cable and double-stepped cable. For deep-water cables with complex configurations, the structural responses become more complicated due to their non-uniform structural properties. Because the distributed buoyancy modules along cable length might introduce more significant local bending segments. Moreover, the impacts of moving boundary, caused by the motions of top vessel and bottom mining vehicle, should be considered. Through combing the finite element simulations with the hydrodynamic models, the dynamic response analysis approach of ultra-deepwater cables is established in this study. Then the double-stepped cable responses, including axial tension, displacement along with the change of overall configurations caused by moving top vessel and bottom mining vehicle, are calculated. Moreover, wave propagation behaviors during cable response are comprehensively examined, and the influences of non-uniform structural properties on cable response and wave propagation are analyzed using the wave propagation theory of structure with axially varying properties based on the Bessel function. The results show that the presented double-stepped cable can provide suitable configurations during the dynamic response, which has good compliance performance and can effectively buffer its response caused by moving boundary excitation. Finally, we found that the response spatial-temporal evolutions present some interesting phenomena, such as the axially non-uniform characteristics lead to non-monotonic changes in response amplitude and wavelength, with local peaks occurring in the low-tension region, owing to the distributed buoyancy modules, along with axially-varying and discontinuous structural properties. And, there exists significant mixed effect coming from both standing waves and traveling waves.

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来源期刊
CiteScore
4.90
自引率
4.50%
发文量
62
审稿时长
12 months
期刊介绍: International Journal of Naval Architecture and Ocean Engineering provides a forum for engineers and scientists from a wide range of disciplines to present and discuss various phenomena in the utilization and preservation of ocean environment. Without being limited by the traditional categorization, it is encouraged to present advanced technology development and scientific research, as long as they are aimed for more and better human engagement with ocean environment. Topics include, but not limited to: marine hydrodynamics; structural mechanics; marine propulsion system; design methodology & practice; production technology; system dynamics & control; marine equipment technology; materials science; underwater acoustics; ocean remote sensing; and information technology related to ship and marine systems; ocean energy systems; marine environmental engineering; maritime safety engineering; polar & arctic engineering; coastal & port engineering; subsea engineering; and specialized watercraft engineering.
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