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A COST-EFFECTIVE NUMERICAL SCHEME FOR CURRENT LOADING ON BARGE-SHAPED FPSO'S

机译:驳船形FPSO上电流负荷的经济有效数值方案

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Barge-shaped FPSO (Floating Production, Storage and Offloading) units are the most favored and adopted development choices in the oil and gas development offshore West Africa, and to a less degree offshore Brazil and in South China Sea as witnessed by the recently completed projects over the last several years. To keep the facility in position, either a spread or turret mooring system has to be designed, fabricated and installed The first step in mooring system design is to size the mooring lines which rely on accurately predicting the current, wind and wave forces. Due to the complexity of topsides and the uncertainty in predicting the forces numerically, physical model tests are most always carried out. In this paper, a simple, elegant and cost-effective numerical approach is presented and validated to predict the current loading. Comparison between previous model test data and numerical results showed excellent agreement for various operating conditions and for transit condition. It is discovered that to correctly assess the yaw moment on a FPSO, the Munk moment on a FPSO has to be properly accounted for in this numerical approach. The accurate way of estimating the Munk moment is discussed. It is concluded that the proposed tool, simple but elegant, is very cost effective in accurately assessing the current loading on a barge-shaped FPSO, and thus, is a valuable tool for PRE-FEED, and/or FEED, or even Detail design phases of a barged-shaped FPSO project.
机译:驳船形FPSO(浮动生产,储存和卸载)单位是近海西非石油和天然气发展中最受欢迎和采用的开发选择,并以最近完成的项目目睹了近海巴西和南海的较少学位在过去的几年里。为了保持设施的位置,必须设计,制造和安装散布或炮塔系泊系统,这是系泊系统设计的第一步是尺寸依赖于准确预测电流,风和波力的系泊线。由于顶部的复杂性和在数值上预测力的不确定性,最常常进行物理模型测试。在本文中,提出和验证了简单,优雅且经济高效的数值方法以预测电流负载。先前模型测试数据和数值结果之间的比较显示了各种操作条件和运输条件的良好协议。发现,为了正确评估FPSO上的横摆力矩,必须在这种数值方法中适当地核对FPSO上的MUNK时刻。讨论了准确的估计MUNK时刻的方式。得出结论是,拟议的工具简单但优雅,在准确评估驳船形FPSO上的电流负载方面是非常有效的,因此是用于预馈送和/或饲料的有价值的工具,甚至细节设计偏磨牙FPSO项目的阶段。

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