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Numerical study of bilge-keel effect on parametric roll and water on deck for an FPSO

机译:FpsO对舱底参数滚转和水面的污浊效应的数值研究

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摘要

This research activity represents the logical continuation of the work documented in [1] and [2] on water on deck and parametric roll for an FPSO in regular waves. Here the same numerical method, based on a domain-decomposition strategy, is used to examine the platform with bilge keels, both without and with mooring-line system. It is found that bilge keels with length 40% of the ship length and with breadth the 3% of the ship breadth limit effectively the roll when instability is promoted by vertical bow motions in waves. In these conditions also the amount of the shipped water is substantially reduced. Large roll induced by the coupling with the lateral motions seems to be less well counteracted and remains close to 10° for steepness kA ≥ 0.2. This value is often set as maximum allowed amplitude for FPSOs in normal operational conditions. Also the effect on the shipped water is limited in this case. Increasing the bilge-keels breadth is confirmed to be beneficial but the combination of the mooring system with dynamic positioning appears needed for a proper control of the roll motion in the worst examined cases.
机译:这项研究活动代表了[1]和[2]中记录的工作在逻辑上的延续,该工作是在规则波浪中FPSO的甲板上水和参量滚上的。在此,基于域分解策略的相同数值方法用于检查带有和不带有系泊系统的舱底龙骨的平台。已经发现,当波浪中垂直船首运动引起不稳定性时,船长为船长的40%,船宽为船宽的3%的舱底龙骨有效地限制了侧倾。在这些条件下,运送的水量也大大减少了。与侧向运动耦合引起的大侧倾似乎没有很好地抵消,并且对于陡度kA≥0.2保持接近10°。通常将此值设置为正常操作条件下FPSO的最大允许幅度。在这种情况下,对运输水的影响也受到限制。确认增加舱底-龙骨的宽度是有益的,但是在最坏的情况下,为了适当控制侧倾运动,似乎需要将系泊系统与动态定位相结合。

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