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Multiobjective Design Optimization of B-Screw Series Propellers Using Evolutionary Algorithms

机译:基于进化算法的B型螺旋桨系列多目标设计优化

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摘要

Methodical series are still widely used in the preliminary design of light- and moderate-duty marine propellers. If the above series enables standard screws to be designed by simple chart methods, they do not help the designer to deal with a complex design involving multiple and conflicting objectives. In this paper, a multiobjective optimization method of B-screw series propeller is introduced that makes use of an evolutionary algorithm maximizing both efficiency and thrust coefficient with a constraint determined by cavitation. The capabilities of the method are illustrated and discussed in detail. The results following the application of the method are given in the form of diagrams, which can be implemented on a common personal computer and used to derive optimal screw configurations in real time.
机译:有条理的系列仍广泛用于轻型和中型船用螺旋桨的初步设计。如果上述系列允许通过简单的图表方法设计标准螺钉,那么它们就无法帮助设计人员处理涉及多个目标且相互矛盾的复杂设计。本文介绍了一种B螺旋桨系列螺旋桨的多目标优化方法,该方法利用演化算法最大化效率和推力系数,并以气蚀确定约束。详细说明和讨论了该方法的功能。应用该方法后的结果以图表的形式给出,可以在普通的个人计算机上实现该图表,并用于实时得出最佳的螺丝配置。

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