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Fatigue life improvement of weathervaning ship-shaped offshore units by a smart heading control system

机译:智能标题控制系统疲劳寿命改善风天卫星船舶船舶近海单位

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摘要

This paper shows the reduction in fatigue damage, and as a consequence in the cost of maintaining hull structure that could be achieved by a smart heading control system for weathervaning ship-shaped offshore units (FPSO, FSU etc). "Smart heading control" is a proactive system which alters the heading of the unit in order to reduce fatigue damage of critical areas and therefore potentially reduce maintenance costs, downtime and risks associated with fatigue damage and or inspecting and repairing hull structure. Locations dominated by wind seas are compared with locations where swell and wind seas are often present at the same time (e.g. Norwegian continental shelf, North Western Atlantic). A Suezmax size FPSO is used to compare the "fatigue damage rate" in the connections of the secondary longitudinal stiffeners to transverse frames for locations along the length and around the girth of the hull against varying ratios of wind sea to swell sea. For seas where the ratio of wind sea energy to swell energy is close to or less than unity and where the swell and wind seas are from different directions the SHC system reduces the fatigue damage by a factor of three.
机译:本文显示了疲劳损坏的降低,并且由于维持船体结构的成本,可以通过智能航向船舶船舶海上单位(FPSO,FSU等)的智能标题控制系统来实现。 “智能标题控制”是一个主动系统,改变了该单元的标题,以降低关键区域的疲劳损坏,因此可能降低与疲劳损坏和检查和修复和修复船体结构相关的维护成本,停机费用和风险。与风海统主导的地点与膨胀和风海洋往往同时存在的地方(例如挪威大陆架子,西北大西洋)。 Suezmax尺寸FPSO用于比较次级纵向加强筋的连接中的“疲劳损伤率”,以沿着船体周长和周围的位置与船体周围的横向框架进行膨胀的海洋。对于风海能量与膨胀能量的比率接近或小于团结,并且膨胀和风海源来自不同方向的地方,SHC系统将疲劳损坏降低三倍。

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