Global Performance Analysis of Deep Draft Semi-Submersible Designed for Standard GOM Application

R. Yuck, D. Kang, E. Kim, M. S. Kim, T. Kim, H. J. Kim, D. Lee, Y. C. Park
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Abstract

A deep draft semi-submersible hull has been developed by SHI (Samsung Heavy Industries) and Williams as a standardization concept which can support the topside structures up to the facility weight for the specific level of daily oil production in GOM (Gulf of Mexico). The designed hull has the optimized dimensions of pontoon and column which secure the sufficient level of GM for the stability and ballast capacity for coping with the weight change of topside structures. The hull form also has the good global motion in waves to be able to use the SCR (Steel Catenary Riser) as a deep draft semi-submersible concept. Two hull forms are designed to have 4 columns with two different cross sections and the conventional ring pontoon. The compartmentation and basic hydrodynamic analysis are performed at the hull sizing stage to achieve the sufficient stability and the motion performance as well. The mooring systems are also designed for two different water depths of 1000m and 3000m as a standard design concept of hull including mooring lines. To verify the feasibility of the proposed hull concept with regard to the hydrostatic/hydrodynamic characteristics and mooring line design, the numerical global performance analyses are carried out. Hydrostatic stability is investigated for intact and damage condition of operational loading condition and the proper tank compartments are verified under the given topside weight and the environment condition in GOM. The global motion is validated for all the possible combinations of wave, wind, current for a site in central GOM. Through the frequency-domain analysis and quasi-static time-domain analysis as well, the essential items such as the maximum offset, mooring line tension/fatigue, air-gap and the extreme acceleration at topside are examined and confirms that the certain design criteria of Semi FPU (Floating Production Unit) operation are satisfied. The possibility of SCR usage is also investigated with the fully coupled time domain analysis using the preliminary design of risers and confirms that the designed hull form has the suitable hydrodynamic characteristics to permit the minimum motion performance for SCR in the sense of extreme load and fatigue life.
标准GOM深吃水半潜船整体性能分析
三星重工(Samsung Heavy Industries)和Williams开发了一种深吃水半潜式船体,作为一种标准化概念,它可以支持上层结构达到设备重量,以满足墨西哥湾特定的日产量水平。设计的船体具有优化的浮桥和柱的尺寸,确保了足够的GM水平,以保证稳定性和压舱能力,以应对上层结构的重量变化。船体形式还具有良好的波浪全局运动,可以使用SCR(钢悬链线立管)作为深吃水半潜式概念。两种船体形式被设计成有4根不同截面的柱子和传统的环形浮筒。在船体定尺阶段进行了隔舱和基本的水动力分析,以获得足够的稳定性和运动性能。作为船体包括系泊线的标准设计概念,系泊系统还设计用于两种不同的水深(1000米和3000米)。为了验证所提出的船体概念在水静力/水动力特性和系泊线设计方面的可行性,进行了数值整体性能分析。在给定的甲板重量和环境条件下,研究了作业载荷完好和损坏情况下的静水稳定性,并验证了适当的舱室。在墨西哥湾中部的一个地点,全球运动验证了波浪、风和电流的所有可能组合。通过频域分析和准静态时域分析,对最大偏移量、系泊索张力/疲劳、气隙、上部极值加速度等关键项目进行了校核,确定了半浮式生产单元运行的一定设计标准。利用立管的初步设计,通过全耦合时域分析,研究了SCR使用的可能性,并确认了所设计的船体形式具有合适的水动力特性,可以在极端载荷和疲劳寿命的意义上允许SCR的最小运动性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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