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Parametric optimization of FPSO hull dimensions for Brazil field using sophisticated stability and hydrodynamic calculations

机译:使用复杂稳定性和流体动力学计算巴西场FPSO船体尺寸的参数优化

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In this study, hull dimensions of an FPSO were optimized to maximize its operability at Brazil field. In contrast with the previous works which have used simplified models to evaluate some indicators related to stability and hydrodynamic performances of FPSOs for its own optimal design, we developed a generic hull and compartment modeler and sophisticated stability and hydrodynamic calculation modules. With the aid of the developed tools, the hull optimization was performed with initial dimensions of an FPSO originally designed for west Africa field. The optimization results indicated the relative importance of hydrodynamic performances compared with stability performances for the FPSO hull dimensioning by showing that there were 3 active constraints related to them, which were the natural periods of heave and roll and the maximum pitch angle under 1-year return period waves at full load condition. To the author's knowledge, this study is the first attempt to combine altogether the hull and compartment modeling and full set of stability and hydrodynamic calculations precisely to optimize an FPSO's hull dimensions within 30?min. Also, it is worthwhile to mention that the developed methods are generic enough to be applied to all types of ship-shaped offshore platforms.
机译:在本研究中,优化了FPSO的船体尺寸,以最大化其在巴西领域的可操作性。与以前的作品相比,已经使用简化模型来评估与其自身的最佳设计的稳定性和流体动力学性能相关的一些指标,我们开发了一种通用的船体和隔间建模仪和复杂的稳定性和流体动力学计算模块。借助于开发的工具,使用最初为西非领域设计的FPSO的初始尺寸进行船体优化。优化结果表明了流体动力学性能与FPSO船体尺寸的稳定性性能相比,通过表明存在与它们相关的3个有源约束,这是升降和卷的自然时期,1年下的最大俯仰角满载条件下的周期波。对于作者的知识,本研究是第一次尝试完全结合船体和隔间建模和全套稳定性和流体动力学计算,精确地优化30 in?min以内的FPSO的船体尺寸。此外,值得一提的是,开发方法是通用足以应用于所有类型的船舶形状的海上平台。

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