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Structural design optimization of racing motor boat based on nonlinear finite element analysis

机译:基于非线性有限元分析的赛车艇结构设计优化

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ABSTRACT Since 1980's, optimum design techniques for ship structural design have been developed to the preliminary design which aims at minimum weight or minimum cost design of mid-ship section based on analytic structural analysis. But the optimum structural design researches about the application for the detail design of local structure based on FEA have been still insufficient. This paper presents optimization technique for the detail design of a racing motor boat. To improve the performance and reduce the damage of a real existing racing boat, direct structural analyses; static and non-linear transient dynamic analyses, were carried out to check the constraints of minimum weight design. As a result, it is shown that the optimum structural design of a racing boat has to be focused on reducing impulse response from pitching motion than static response because the dynamic effect is more dominant. Optimum design algorithm based on nonlinear finite element analysis for a racing motor boat was developed and coded to ANSYS, and its applicability for actual structural design was verifed.
机译:摘要自1980年代以来,船舶结构设计的最佳设计技术已发展到初步设计,其目的是基于分析结构分析,以最小重量或最小成本设计中部型船。但是,基于有限元分析的局部结构细节设计应用的最优结构设计研究仍然不够。本文提出了一种用于赛车摩托艇细节设计的优化技术。为了提高性能并减少实际赛艇的损坏,请直接进行结构分析;进行静态和非线性瞬态动态分析,以检查最小权重设计的约束。结果表明,与动态响应相比,赛车的最佳结构设计必须集中于减少俯仰运动的冲激响应,因为动态效果更为明显。研发了基于非线性有限元分析的赛车用摩托艇最佳设计算法,并将其编码到ANSYS中,验证了其在实际结构设计中的适用性。

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