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首页> 外文期刊>Ocean Engineering >Study on optimal design of hatch cover via a three-stage optimization method involving material selection, size, and plate layout arrangement
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Study on optimal design of hatch cover via a three-stage optimization method involving material selection, size, and plate layout arrangement

机译:涉及材料选择,尺寸和板布置布置的三阶段优化方法舱口盖最优设计研究

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摘要

The rising prices of materials for ship construction is one of the primary problems faced by global shipbuilding industries. A potential solution is to reduce the material cost through a structure optimization technique. In this study, the plate material and stiffener types, plate thickness, and plate layout are optimized in order to minimize the cost of materials. The genetic algorithm (GA) is a popular optimization technique for determining design variables. However, the GA is not suitable for dealing with continuously changing design variables, such as plate thickness. Hence, this study proposes a three-stage optimization method that consists of the optimization of plate material and stiffener types, plate thickness, and plate layout. The first and second stages are part of an integrated process called the hybrid GA, which starts with the plate material and stiffener-type selections, and then performs plate thickness optimization. The hybrid GA is effective in simultaneously determining design variables with different characteristics, such as the first - and second-stage problems. The last stage is layout optimization in which the plate material and stiffener types handled in the previous stage are considered to have been decided, thereby resulting in minimal effort during this stage.
机译:船舶建设材料上涨是全球造船业面临的主要问题之一。潜在的解决方案是通过结构优化技术来降低材料成本。在该研究中,优化了板材和加强件类型,板厚和板布局,以使材料成本最小化。遗传算法(GA)是一种用于确定设计变量的流行优化技术。然而,GA不适合处理连续改变的设计变量,例如板厚度。因此,本研究提出了一种三级优化方法,包括优化板材和加强件类型,板厚和板布局。第一和第二阶段是称为混合GA的综合过程的一部分,其以板材和加强件型选择从板材开始,然后执行板厚度优化。混合GA有效地在同时确定具有不同特性的设计变量,例如第一和第二阶段问题。最后阶段是布局优化,其中考虑了在前一级处理的板材和加强件类型已经被认为已经决定,从而在此阶段导致最小的努力。

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