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Hydrodynamic hull form optimization using parametric models

机译:使用参数模型进行水动力船体形式优化

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摘要

Hydrodynamic optimizations of ship hull forms have been carried out employing parametric curves generated by fairness-optimized B-Spline form parameter curves, labeled as F-Spline. Two functionalities of theparametric geometry models are used in the present study: a constrained transformation function to account for hull form variations and a geometric entity used in full parametric hull form design. The present F-Spline based optimization procedure is applied to two distinct hydrodynamic hull form optimizations: the global shape optimization of an ultra-large container ship and the forebody hull form for the hydrodynamic optimization of an LPG carrier. Improvements of ship performance achieved by the proposed F-Spline procedure are demonstrated through numerical experiments and through correlations with experimental data. The ultra-large containership was built and delivered to the ship owner. The present study validates the effectiveness of the proposed hydrodynamic optimization procedure, ushering in process automation and performance improvement in practical ship design practices.
机译:船体形状的水动力优化已通过使用由公平性优化的B样条曲线形状参数曲线(标记为F样条曲线)生成的参数曲线进行。本研究中使用参数化几何模型的两个功能:用于说明船体形式变化的约束转换函数和用于完整参数化船体形式设计的几何实体。当前基于F样条的优化程序应用于两种截然不同的水动力船体形式优化:超大型集装箱船的整体形状优化和液化石油气船的水动力优化的前体船体形式。通过数值实验以及与实验数据的相关性,证明了通过拟议的F样条程序实现的船舶性能的提高。建造了超大型集装箱船并交付给船东。本研究验证了提出的水动力优化程序的有效性,在实际的船舶设计实践中引入了过程自动化和性能改进。

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