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3-D numerical modelling of greenwater loading on fixed ship-shaped FPSOs

机译:固定船舶FPSO上绿水装载的3-D数值模型

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This work is focused on the assessment of greenwater overtopping onto fixed ship-shaped FPSO models using three dimensional (3-D) Computational Fluid Dynamics (CFD) simulations. Good agreement between the numerical results and published experimental data from Barcellona et al. (2003) indicates that 3-D CFD is an effective tool which may be used to assess greenwater associated with an incident wave group. Different wall-sided bow shapes are investigated numerically, and the results provide insight into how the bow shape influences the evolution of on-deck flows, and the horizontal force on a vertical wall spanning the full deck width for incident waves approaching normal to the bow. It is found that the horizontal force, thus, the horizontal momentum of greenwater flows, is a result of the combined action of water-front velocities and the corresponding water volume impacting on the structures. For the bow shapes considered in this study, although clear differences in on-deck flow are observed for different bow shape, differences in force on the vertical wall are relatively small. Simulations for a 2-D vertical rectangular box that has the same longitudinal section as the 3-D model FPSOs give somewhat similar results to 3-D predictions along the centre-line. This similarity may be due partly to the fact that increases in on-deck flow velocity due to increased freeboard exceedance in the 2-D simulations compensates for a lack of focusing of the on-deck flow observed in the 3-D simulations. This finding has implications for understanding how computationally cheaper 2-D greenwater simulations relate to more realistic 3-D greenwater events. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作主要集中在使用三维(3-D)计算流体动力学(CFD)模拟的固定船舶形FPSO模型上的绿色沃特。来自Barcellona等人的数值结果和公布的实验数据之间的良好一致性。 (2003)表明3-D CFD是一种有效工具,可用于评估与事件波组相关的绿水。数值研究不同的壁面蝴蝶结形,结果深入了解弓形流动如何影响甲板流动的演变,以及垂直墙上的水平力,跨越全甲板宽度的入射波接近正常到弓形。结果发现,水平力,因此,绿水流动的水平动量,是水上前速度的组合作用和对结构的相应水量的组合作用。对于在本研究中考虑的弓形形状,尽管对于不同的弓形来观察到甲板流的明显差异,但垂直墙上的力的差异相对较小。对于具有与3-D型FPSO相同的纵向部分的二维垂直矩形盒的模拟,沿着中心线的3-D预测给出了一些类似的结果。这种相似性可以部分地到期,由于在二维模拟中由于增加的流动速度增加而导致的甲板流速的增加补偿了在3-D模拟中观察到的甲板流的缺乏聚焦。这一发现对了解计算较便宜的2-D绿水模拟如何与更现实的3-D绿水活动有关的影响。 (c)2018年elestvier有限公司保留所有权利。

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