首页> 外文会议>34th International conference on ocean, offshore and arctic engineering 2015 >'BIGFOOT' DVA SEMI-SUBMERSIBLE MODEL TESTS AND COMPARISON WITH NUMERICAL PREDICTIONS
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'BIGFOOT' DVA SEMI-SUBMERSIBLE MODEL TESTS AND COMPARISON WITH NUMERICAL PREDICTIONS

机译:“ BIGFOOT” DVA半潜式模型测试及其数值预测的比较

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The Bigfoot direct vertical access (DVA) semisubmersible is a novel floating drilling and production host that provides an attractive alternative to the spar. This concept utilizes heave plates (big feet) that improve the motion characteristics of a semisubmersible in all mild environments (S.E. Asia, W. Africa and Brazil). Bigfoot offers direct-vertical access (DVA) which is often a project requirement. This floater works in all water depths, in particular ultra-deepwater (5000+ ft) where a tension leg platform (TLP) is not an option, supports top tensioned risers and enables drilling and workover operations. The Bigfoot has several advantages over a spar. These include: 1) Quayside topsides integration. This eliminates offshore topsides integration, a significant issue for all spar projects in terms of cost, safety and schedule. 2) A more open deck layout compared to a spar, 3) No fabrication location restrictions as it can be built by many yards worldwide potentially offering local content to a project. Model tests were undertaken at the Shanghai Jiao Tong University (SJTU) Offshore Basin to assess the dynamic response of the Bigfoot in waves, swell, wind and current. Five mild (non-Gulf of Mexico) environments were considered. In all cases, the floater motions are an order of magnitude smaller than those of a conventional semisubmersible for similar deck payload thus enabling drilling operations and top-tensioned production risers. In a parallel effort, a COSMOS numerical model of the Bigfoot was developed for coupled motion analysis. The experimental results and the COSMOS numerical predictions are in close agreement. In addition to measuring global motions, two heave plates were instrumented with load cells to measure forces and moments. The force measurements from the model tests are in good agreement with numerical predictions using computational fluid dynamics (CFD).
机译:大脚怪直接垂直进入(DVA)半潜式潜水器是一种新颖的浮式钻井和采油主机,可为翼梁提供有吸引力的替代方案。该概念利用了升沉板(大脚板),可以改善半潜式在所有温和环境(东南亚,南非和巴西)中的运动特性。大脚怪提供直接垂直访问(DVA),这通常是项目要求。该浮子可在所有水深中工作,尤其是超深水(5000+ ft),在这种情况下,不能选择使用张力腿平台(TLP),可支撑顶部张紧的立管,并能够进行钻井和修井作业。大脚怪比翼龙有几个优势。其中包括:1)码头区顶层整合。这样就消除了离岸上层的整合,这在成本,安全性和进度方面对所有晶石项目都是一个重大问题。 2)与翼梁相比,甲板布局更开放; 3)不受制造地点限制,因为它可以由世界各地的许多船厂建造,有可能为项目提供本地内容。在上海交通大学(SJTU)近海盆地进行了模型测试,以评估大脚怪在波浪,涌浪,风和水流中的动力响应。考虑了五个温和的(墨西哥湾以外)环境。在所有情况下,对于类似的甲板有效载荷,浮子的运动都比传统的半潜式潜水器的运动小一个数量级,因此能够进行钻井作业和顶部张紧的生产立管。同时,还开发了大脚怪的COSMOS数值模型用于耦合运动分析。实验结果与COSMOS数值预测非常吻合。除了测量整体运动之外,还对两个起伏板安装了称重传感器,以测量力和力矩。来自模型测试的力测量结果与使用计算流体动力学(CFD)的数值预测非常吻合。

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