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FULL STOCHASTIC FATIGUE ANALYSIS FOR KIZOMBA 'A' FPSO-HULL INTERFACE DESIGN

机译:Kizomba'A'FPSO-HULL界面设计的全随机疲劳分析

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As the offshore oilfields shift into the deeper ocean of less infra, FPSOs become a popular solution. Many FPSOs operate in fields where they are expected to stay for decades without drydocking for maintenance. Currently one of the most active area of the FPSO installation is the west Africa offshore where the sea state is benign and the swell from the south is dominant and the water depth is deep. In the case of long operation in the benign site, the fatigue is rather important in the structural design point of view. This paper describes the first extensive practical application of the full stochastic fatigue analysis method to the design of the FPSO-hull interface design like topside supports, flare tower foundation, riser porches, caissons, crane pedestals, mooring foundations, helideck connections, deck penetrations and etc. Especially, topside support is highlighted in detail because of its potential inertia loading due to heavy weight and importance in fabrication stage. The full length of Kizomba 'A' FPSO being built in Hyundai Heavy Industries is modeled for the global analysis and the boundary conditions from the global model analysis are transferred for the local model analysis. Some discussions of screening analysis and hot spot stress calculation and roll damping evaluation are also presented.
机译:随着海上油田转移到更深的海洋的较深的海洋中,FPSOS成为一个流行的解决方案。许多FPSO在田野中运营,在没有干燥的情况下,他们预计将留在没有干燥的维修。目前,FPSO安装中最活跃的地区之一是西非海上海区,海州是良性的,南方的膨胀是主导的,水深是深沉的。在良性地点长期运行的情况下,在结构设计的角度来看疲劳相当重要。本文介绍了全随机疲劳分析方法对FPSO-HULL界面设计设计的第一次广泛的实际应用,如顶部支撑,喇叭塔基础,提升管道,沉裙,起重机基座,系泊基金会,Helideck连接,甲板穿透和特别地,由于其在制造阶段的重量和重要性,其潜在的惯性升高,细节突出显示顶侧支撑。 kizomba'A'FPSO建在现代重工业的FPSO是为全局分析的建模,而全局模型分析的边界条件被建模用于本地模型分析。还提出了一些筛选分析和热点应力计算和卷起评估的讨论。

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