首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >GLOBAL PERFORMANCE OF THE PERDIDO SPAR IN WAVES, WIND AND CURRENT - NUMERICAL PREDICTIONS AND COMPARISON WITH EXPERIMENTS
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GLOBAL PERFORMANCE OF THE PERDIDO SPAR IN WAVES, WIND AND CURRENT - NUMERICAL PREDICTIONS AND COMPARISON WITH EXPERIMENTS

机译:波浪,风和电流中Perdido SPAR的全球性能-数值预测以及与实验的比较

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In recent years, spars have become a preferred industry solution for certain offshore deepwater developments. Perdido is the first spar platform to be operated by Shell. The Perdido spar has been recently installed in the ultradeepwater Gulf of Mexico Alaminos Canyon and is scheduled for first oil in 2010. This Direct Vertical Access (DVA) spar will operate at a water depth of 7,825' and will be the deepest spar production and drilling facility in the world.Numerical predictions of the spar global motions in waves, wind and current are presented in this paper. Motivation for this study comes from two facts:1. Each spar platform design is unique in terms of its size, number and geometry of heave plates, riser system and mooring system2. Metoccan design criteria have been increased in view of the recent hurricanesModel tests of the Perdido spar were conducted at MARIN at a scale of 1:59.94. In these experiments, several Gulf of Mexico (GOM) wave, current and wind environments were considered. The six-degree-of-freedom motions, deck accelerations, air gap, as well as the loads on the heave plates, mooring lines and risers were measured.In this paper, global motion predictions of the Perdido spar are given using Shell's in-house COSMOS/ WAMIT suite of programs. Extensive comparisons between the numericalpredictions and the experimental results were undertaken. In all cases, the comparisons are very good.In order to include heave viscous loads and damping, special line members were included at the bottom of the hard tank, the bottom of the soft tank and each heave plate, in addition to standard line members used to describe the truss. These special members contribute heave viscous loads with drag coefficients selected from the Perdido experiments.Several heave plate configurations were considered to systematically study the impact of heave plates on the spar global motions. The influence of the heave plate geometry on the heave added mass and on the global motions was derived using WAMIT. The strakes' actual geometry was also included in the WAMIT diffraction analysis.Most of the moonpool area at the bottom of the Perdido hard tank is closed. As a result, the pumping mode was not excited during the experiments. However, numerical simulations with WAMIT showed a sharp peak at the "pumping mode" resonant frequency. This peak was suppressed by introducing a second floating body that capped the moonpool at the water surface.Based on these learnings, recommendations for global motion modeling are presented in this paper.
机译:近年来,对于某些离岸深水开发,稀疏已成为首选的行业解决方案。 Perdido是Shell运营的第一个spar平台。 Perdido晶石最近已安装在墨西哥湾阿拉米诺斯峡谷的超深水区,计划于2010年投入使用。这种直接垂直通道(DVA)晶石将在7,825'的水深下运行,将是最深的晶石生产和钻井世界各地的设施。 本文提出了梁在波浪,风和流中的整体运动的数值预测。这项研究的动机来自两个事实: 1.每个翼梁平台设计在尺寸,数量,升沉板,立管系统和系泊系统的几何形状方面都是独特的 2.鉴于最近的飓风,Metoccan设计标准已经提高 在MARIN上以1:59.94的比例进行了Perdido晶石的模型测试。在这些实验中,考虑了几个墨西哥湾(GOM)的波浪,电流和风环境。测量了六自由度的运动,甲板加速度,气隙以及升沉板,系泊缆和立管上的载荷。 在本文中,使用壳牌公司内部的COSMOS / WAMIT程序套件给出了Perdido翼梁的整体运动预测。数值之间的广泛比较 进行了预测和实验结果。在所有情况下,比较都很好。 为了包括沉重的粘性载荷和阻尼,除了用于描述桁架的标准管线构件之外,在硬罐的底部,软罐的底部和每个沉沉板中还包括特殊的管线构件。这些特殊的成员通过从Perdido实验中选择的阻力系数来贡献沉重的粘性载荷。 考虑了几种升沉板构型来系统地研究升沉板对翼梁整体运动的影响。使用WAMIT得出了升沉板几何形状对升沉附加质量和整体运动的影响。 WAMIT衍射分析中还包括了钢片的实际几何形状。 Perdido硬质坦克底部的大部分月池区域都是封闭的。结果,在实验过程中泵浦模式没有被激发。但是,使用WAMIT进行的数值模拟显示了在“泵浦模式”共振频率处的一个尖峰。通过引入第二个浮体将月池盖在水面上,从而抑制了该峰。 基于这些学习,本文提出了有关全局运动建模的建议。

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