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Constructal design associated with genetic algorithm to minimize the maximum deflection of thin stiffened steel plates

机译:与遗传算法相关的构造设计,以最大限度地减少薄加强钢板的最大挠度

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摘要

This paper deals with the application of stochastic technique allied to the constructal design (CD) method and computational modeling for the optimization of composed plates reinforced by stiffeners. More specifically, it seeks to determine the optimal geometric configuration of the stiffened plate that minimizes its maximum deflection. For this purpose, a simply supported rectangular plate (with no stiffeners) was adopted as a reference. Then, a set of geometric configurations was proposed, through the application of CD method, by transforming a volume fraction (Φ) of the reference plate into longitudinal and transverse stiffeners, maintaining the total volume, in-plane dimensions, boundary conditions, and loading. Regarding the optimization procedure, the genetic algorithm (GA) was chosen as the optimization method, and the geometric parameters considered as degrees of freedom were as follows: the number of longitudinal (N_(ls)) and transverse (N_(ts)) stiffeners; the thickness of the longitudinal (t_(ls)) and transverse (t_(ts)) stiffeners; and longitudinal and transverse stiffeners' heights ratio (h_(ts)/h_(ls)). Moreover, several values of Φ were considered. Results indicated a great influence of the geometry on the mechanical behavior of the stiffened plates, as the optimal geometric configuration obtained here led to a reduction of over 98% in the maximum deflection in comparison with the reference plate.
机译:本文涉及随机技术所依赖于构造设计(CD)方法和计算建模,以优化加强筋增强的组成板。更具体地,它寻求确定硬化板的最佳几何构造,最小化其最大偏转。为此目的,采用简单地支撑的矩形板(没有加强剂)作为参考。然后,通过应用CD方法来提出一组几何配置,通过将参考板的体积分数(φ)转换为纵向和横向加强件,保持总体积,面内尺寸,边界条件和装载。关于优化过程,选择遗传算法(GA)作为优化方法,并且考虑到自由度的几何参数如下:纵向(N_(LS))和横向(N_(TS))加强件的数量;纵向(T_(LS))和横向(T_(TO))加强件;纵向和横向加强筋的高度比(H_(TS)/ H_(LS))。此外,考虑了几个φ的值。结果表明几何形状对加强板的机械行为的影响,因为这里获得的最佳几何构造导致最大偏转的减少超过98%,与参考板相比。

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