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Classical and modern optimization methods in minimum weight design of elastic rotating disk with variable thickness and density

机译:厚度和密度可变的弹性转盘最小重量设计的经典和现代优化方法

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摘要

Rotating disks work mostly at high angular velocity and this results a large centrifugal force and consequently induce large stresses and deformations. Minimizing weight of such disks yields to benefits such as low dead weights and lower costs. This paper aims at finding an optimal disk profiles for minimum weight design using the Karush-Kuhn-Tucker method (KKT) as a classical optimization method, simulated annealing (SA) and particle swarm optimization (PSO) as two modern optimization techniques. Some semi-analytical solutions for the elastic stress distribution in a rotating annular disk with uniform and variable thickness and density proposed by the authors in the previous works have been used. The von Mises failure criterion of optimum disk is used as an inequality constraint to make sure that the rotating disk does not fail. The results show that the minimum weight obtained for all three methods is almost identical. The KKT method gives a profile with slightly less weight (6% less than SA and 1% less than PSO) while the implementation of PSO and SA methods are easier and provide more flexibility compared with those of the KKT method. The effectiveness of the proposed optimization methods is shown.
机译:旋转盘主要在高角速度下工作,这会导致较大的离心力,从而导致较大的应力和变形。使这种盘的重量最小化产生诸如低自重和较低成本的益处。本文旨在通过使用Karush-Kuhn-Tucker方法(KKT)作为经典优化方法,模拟退火(SA)和粒子群优化(PSO)作为两种现代优化技术来找到用于最小重量设计的最佳磁盘轮廓。已经使用了作者在以前的工作中提出的具有均匀且可变的厚度和密度的旋转环形盘中弹性应力分布的一些半解析解。最佳圆盘的von Mises破坏准则用作不等式约束,以确保旋转的圆盘不会出现故障。结果表明,这三种方法获得的最小重量几乎相同。与KKT方法相比,KKT方法的轮廓重量略小(比SA少6%,比PSO少1%),而PSO和SA方法的实现更容易并且具有更大的灵活性。显示了所提出的优化方法的有效性。

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