首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >PERFORMANCE EVALUATIONS OF TAUT-WIRE MOORING SYSTEMS FOR DEEPWATER SEMI-SUBMERSIBLE PLATFORM
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PERFORMANCE EVALUATIONS OF TAUT-WIRE MOORING SYSTEMS FOR DEEPWATER SEMI-SUBMERSIBLE PLATFORM

机译:深水半潜式平台钢丝绳系泊系统的性能评估

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In order to investigate the effect of taut-wire mooring system on the motion performance of semi-submersible platforms, parametric studies of coupled motion responses are conducted using a time domain analysis in this study. The nonlinear dynamic characteristics of mooring lines and the interactions of platform and mooring lines are investigated. The parametric studies consist of investigating the effects of the hydrodynamic coefficients C_a and C_D of mooring line, tension dip angle, mooring line pretension, different taut-mooring arrangements and total number of mooring lines on the motion performance of a semi-submersible platform in water depth of 1500 meters, which is subjected to a 100 year return significant wave height of 13.3 meters, a peak period of 15.5 seconds, a current speed of 1.97 meters per second and wind speed of 55 meters per second. The wind and current both act in the same direction as the ocean waves in this study in order to estimate the maximum mooring line loads. The environmental load direction is varied from 0° to 90 °at the interval of 15 degrees. Seven directions are calculated in total. The research results show that the different parameters, such as the hydrodynamic coefficients of the mooring line, tension dip angle, pre-tension, arrangement angle of mooring lines and total number of mooring lines, have different effects on the coupled motion responses. In particular, the arrangement angles of mooring lines have significant effect on motion responses and dynamic loads of mooring lines. The motion performance of semi-submersible platform and mooring line dynamic loads can be controlled effectively when these parameters are selected reasonably throughout parametric studies carefully designed and conducted.
机译:为了研究拉紧缆绳系泊系统对半潜式平台运动性能的影响,本研究中使用时域分析进行了耦合运动响应的参数研究。研究了系泊索的非线性动力特性以及平台与系泊索的相互作用。参数研究包括调查系泊缆的水动力系数C_a和C_D,张力倾角,系泊缆的预张力,不同的系紧系泊布置和系泊缆总数对半潜式平台在水中运动性能的影响深度为1500米的1500米,经历100年返回的重要波高为13.3米,峰值时间为15.5秒,当前速度为每秒1.97米,风速为每秒55米。在这项研究中,风和海流的作用方向都与海浪相同,以便估计最大的系泊缆负载。环境负载方向以15度为间隔从0°到90°变化。总共计算出七个方向。研究结果表明,系泊缆的水动力系数,张力倾角,预拉力,系泊缆的布置角度和系泊缆总数等不同参数对耦合运动响应有不同的影响。特别地,系泊缆的布置角度对系泊缆的运动响应和动态载荷具有显着影响。在精心设计和执行的参数研究中合理选择这些参数时,可以有效地控制半潜平台的运动性能和系泊缆的动态载荷。

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