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Numerical Study of Operating Stability of an Innovative Cable Laying Vessel Under Extreme Conditions

机译:极端条件下新型电缆敷设船工作稳定性的数值研究

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An innovative cable laying vessel was designed for the grid connecting project of Zhoushan Islands, which is under construction now. Cable laying operation proposed a serious demand of the stability during the operation period. The mooring system should provide enough stability to the vessel under a tough sea condition. A numerical study has been carried out to investigate the operating stability of the vessel under different extreme sea conditions, which includes high-speed tidal-streams and the wave conditions during the typhoon period. The ANSYS-AQWA was employed to establish a numerical wave tank for the further studies. The potential flow assumption was used for wave generation and fluid-structure interactions, which is validated by the related experimental results. Effects of various mooring-line arrangement plans on the stability of the cable-laying vessel are studied under local extreme sea conditions. The tensions of the mooring line and the cables were also calculated for verification.
机译:为正在建设中的舟山群岛并网项目设计了一种创新的电缆敷设船。电缆敷设操作对操作期间的稳定性提出了严格的要求。系泊系统应在恶劣的海况下为船舶提供足够的稳定性。为了在不同的极端海况下,包括高速潮汐流和台风期间的波浪情况,进行了数值研究以研究船舶的运行稳定性。 ANSYS-AQWA被用来建立一个数值波箱,以进行进一步的研究。潜在的流量假设被用于波浪的产生和流体-结构的相互作用,这被相关的实验结果所证实。在局部极端海况条件下,研究了各种系泊缆布置方案对电缆敷设船的稳定性的影响。还计算了系泊缆和缆索的张力以进行验证。

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