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Marine shafting reasonable alignment design based on genetic algorithm

机译:基于遗传算法的船舶轴系合理对中设计

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Marine shafting alignment is an indispensable part of marine propulsion shafting design and installation. In this paper, the marine shafting reasonable alignment based on genetic algorithm is investigated. The three-moment theory is utilized to analyze the bearing loads at straight alignment and bearing additional loads caused by offsets of bearings and inflections of flanges. An optimization model of reasonable alignment is constructed in which both the maximum and mean of loads for bearings are taken as the objective function while the offsets of bearings and inflections of flanges are all considered. The constrained optimal design problem is solved using real coded genetic algorithm avoiding of the sensitivity analysis. The correctness and validity of the design method are illustrated by a numerical example.
机译:船用轴系对中是船用推进轴系设计和安装中必不可少的部分。本文研究了基于遗传算法的船舶轴系合理对准。三矩理论用于分析直线对准时的轴承载荷以及由轴承的偏移和法兰的弯曲引起的轴承附加载荷。建立了合理对中的优化模型,在该模型中,以轴承的最大载荷和平均载荷为目标函数,同时考虑了轴承的偏移量和法兰的挠度。使用实数编码遗传算法解决了受限的最优设计问题,避免了敏感性分析。数值算例说明了设计方法的正确性和有效性。

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