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首页> 外文期刊>日本船舶海洋工学会論文集 >A Study on the Stern Shape Optimization of a Container Ship using Navier-Stokes Analysis
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A Study on the Stern Shape Optimization of a Container Ship using Navier-Stokes Analysis

机译:基于Navier-Stokes分析的集装箱船船尾形状优化研究

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摘要

Optimizing hull form design is playing a more important role in the shipbuilding industry, especially when regulations on the environmental protection and improvement of ship energy efficiency become more stringent than ever. Though the studies on design optimization of ship hull have a long history and achieved some significant results, studies on the stern shape optimization of a ship hull have been a few due to the complexity of flow field behind a transom stern. In this paper, a numerical method for optimizing the stern shape of a container ship based on a nonlinear programming method and a Navier-Stokes analysis is proposed. A CFD solver which solves the three-dimensional Reynolds Averaged Navier-Stokes (RANS) equations for incompressible flows is used for evaluation of an objective function and analysis of flow fields around ship hulls. The Sequential Quadratic Programming (SQP) method is utilized as an optimizer which automatically determines values of the design variables in such a way that the objective function is minimized subject to the given constraints. Design variables are selected so that the modified transom shapes are efficiently created during the optimization process. To demonstrate the applicability of the present method, transom stern of a container ship is optimized to minimize the pressure resistance coefficient at a model scale. In addition, the effects of the initial designs and of the frameline modification functions to the optimized results are examined in this paper. The optimized results show that the present optimization system is able to create a stern shape that decreases the pressure resistance coefficient; however, it turns out that special cares should be taken in selection of the initial designs and of the hull form modification functions since the optimization results strongly depend on these parameters.
机译:优化船型设计在造船业中起着越来越重要的作用,尤其是在环境保护和提高船舶能效的法规比以往任何时候都严格的时候。尽管对船体设计优化的研究已有很长的历史,并取得了一些显着的成果,但由于尾板后部流场的复杂性,对船体形状优化的研究很少。本文提出了一种基于非线性程序设计和Navier-Stokes分析的优化集装箱船船尾形状的数值方法。 CFD求解器可求解不可压缩流的三维雷诺平均Navier-Stokes(RANS)方程,用于评估目标函数和分析船体周围的流场。顺序二次编程(SQP)方法被用作优化器,该优化器可以自动确定设计变量的值,以使目标函数在给定约束下达到最小。选择设计变量,以便在优化过程中有效地创建修改的横梁形状。为了证明本方法的适用性,对集装箱船的船尾进行了优化,以最小化模型规模的耐压系数。此外,本文还研究了初始设计和框架修改功能对优化结果的影响。优化结果表明,本优化系统能够产生减小压力阻力系数的船尾形状。但是,事实证明,在选择初始设计和船体形式修改功能时应格外小心,因为优化结果很大程度上取决于这些参数。

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