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Estimation Local Strength of Bow Structure for High Tensile Steel Yacht based on Optimum Design

机译:基于优化设计的高强度钢游艇船Bow结构局部强度估算

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The optimum design for bow structure of high tensile steel yacht belongs to the nonlinear constrained optimization problem. The determination of scantlings for the bow structure is a very important matter out of whole structural design process of a yacht. The optimum design results are produced with the use of Real-coded Micro-Genetic Algorithm including evaluation LR small craft guideline, so that they can satisfy the allowable stress criterion. In this study, the minimum weight design of bow structure on the HTS yacht was carried out based on the finite element analysis. An analysis model is a bow structure of HTS yacht with structural scantling derived from the minimum weight optimization. The weight of bow structure and the main dimensions of structural members are chosen as an objective function and design variable, respectively. Optimization results were compared with a pre-existing design. From the FE analysis results, bow structure with high tensile steel (AH40) designed by using RμGA has a volume efficiency of 19% than the design of the actual mild yacht.
机译:高强度钢游艇船头结构的优化设计属于非线性约束优化问题。在游艇的整个结构设计过程中,确定船头结构的尺寸是非常重要的事情。最佳设计结果是通过使用实码编码的微遗传算法(包括评估LR小工艺准则)得出的,从而可以满足允许的应力准则。在这项研究中,基于有限元分析,进行了HTS游艇船头结构的最小重量设计。分析模型是HTS游艇的船头结构,其结构尺寸源自最小重量优化。分别选择船首结构的重量和结构构件的主要尺寸作为目标函数和设计变量。将优化结果与现有设计进行比较。从有限元分析结果来看,使用RμGA设计的高强度钢(AH40)船首结构的容积效率比实际轻型游艇的设计效率高19%。

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