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Hull surface modification for ship resistance performance optimization based on Delaunay triangulation

机译:基于Delaunay三角剖分的船体表面改性以优化船舶阻力性能

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摘要

Combining computational fluid dynamics and optimization techniques provides a significant method for automatic multi-scheme selection in hull form optimization, which can improve the design level of energy-efficient ships. This paper focuses on hull surface automatic modification and its application in hull form optimization. A new hull surface automatic modification method is proposed, based on the radial basis function interpolation method. Furthermore, Delaunay triangulation is applied in order to determine the support radius of the Wendland basic function. The developed hull form optimization tool is applied to the hydrodynamic design optimization of a Series 60 model, and model tests are carried out on the original and an optimised model at WHUT (Wuhan University of Technology) for validation. The numerical optimization and model tests results demonstrate that the proposed method can significantly improve optimization efficiency.
机译:将计算流体动力学与优化技术相结合,为船体形式优化中的自动多方案选择提供了重要的方法,可提高节能船的设计水平。本文着重研究船体表面的自动修改及其在船体形状优化中的应用。提出了一种基于径向基函数插值的船体表面自动修正方法。此外,应用Delaunay三角剖分以确定Wendland基本函数的支撑半径。所开发的船体形式优化工具应用于60系列模型的水动力设计优化,并在WHUT(武汉理工大学)上对原始模型和优化模型进行了模型测试以进行验证。数值优化和模型测试结果表明,该方法可以显着提高优化效率。

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