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Contemporary Challenges and Solutions for Post-Katrina Gulf of Mexico Spar Design

机译:当代挑战与墨西哥斯法尔设计湾海湾的当代挑战与解决方案

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Deepwater field developments in the Gulf of Mexico typically consider Spar, Tension Leg Platform and Semisubmersible hull forms as potential candidates for floating facilities. Since 2005, field development studies for floating systems have had to consider more severe environmental conditions, including increased wind and wave criteria released in API Bulletin 2INT-MET in 2007, increased or more prevalent loop/eddy current events and longer wave periods. These changes have quantifiable impacts to Spar hull and mooring design that are evaluated in this paper. In addition to the design challenges presented by the environment, operator functional requirements (e.g. hull-supported top-tensioned risers), robustness requirements (e.g. minimum air gap in survival conditions) and execution plan considerations (e.g. hull dry transport constraints) also have a quantitative impact on the Spar configuration. This paper presents a summary of the recent design challenges affecting Gulf of Mexico Spar design and uses global performance analysis to evaluate different options to update the Spar configuration to effectively satisfy the design challenges. Design solutions that produce acceptable global performance results are further evaluated to quantify the potential benefit to delivery cost and schedule based on overall hull weight. Based on the analysis results, recommendations are made regarding the best solution to meet the identified post-Katrina design challenges. Results indicate that the optimum number of heave plates depends on the top-tensioned riser support system. The effect of overall hull length (a typical execution plan constraint) on overall weight (and therefore cost) for a given payload is identified. The technical solutions and recommendations are applicable to all future field developments that are considering a Spar hull concept to support floating facilities. The offshore oil industry is characterized by more challenging developments, increasing costs, and ever-increasing focus on safety and survivability. The technical conclusions and recommendations from the work discussed in this paper will assist operators that choose the Spar concept in developing more cost effective designs that retain the required robustness and survivability for safe, reliable operations.
机译:墨西哥湾的深水田地发展通常会认为翼梁,张力腿平台和半骨骼形式作为浮动设施的潜在候选人。自2005年以来,对浮动系统的现场开发研究必须考虑更严重的环境条件,包括在2007年的API公告中发布的风和波标准增加,增加或更普遍存在的环路/涡流事件和更长的波浪时段。这些变化可量化对本文中评估的翼壳和系泊设计的影响。除了环境呈现的设计挑战之外,操作员功能要求(例如船体支持的顶张力提升器),鲁棒性要求(例如生存条件中的最小气隙)和执行计划考虑(例如船体干运输限制)也有一个对翼梁配置的定量影响。本文提出了影响墨西哥峡湾设计湾最近的设计挑战的摘要,并使用全球性能分析来评估不同的选择,以更新SPAR配置,以有效满足设计挑战。进一步评估生产可接受的全球性能结果的设计解决方案,以量化基于整体船体重量的交付成本和时间表的潜在效益。根据分析结果,建议是关于满足鉴定的后卡特里娜设计挑战的最佳解决方案。结果表明,最佳数量的升降板取决于顶张张紧的提升器支持系统。鉴定了整体船体长度(典型执行计划约束)对给定有效载荷的总重量(和因此成本)的影响。技术解决方案和建议适用于考虑支撑浮动设施的翼壳概念的所有未来现场发展。海上石油工业的特点是开发更具挑战性,成本增加,越来越多地关注安全性和生存能力。本文讨论的工作的技术结论和建议将帮助运营商选择SPAR概念,以开发更具成本效益的设计,以保留所需的安全性,可靠运营的鲁棒性和生存能力。

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