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Adaptive growth technique of stiffener layout pattern for plate and shell structures to achieve minimum compliance

机译:板壳结构的加劲肋布局模式的自适应增长技术,以实现最小的柔度

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摘要

A new and effective generation method for the stiffener layout pattern for plate and shell structures to achieve minimum compliance, the so-called adaptive growth technique, is suggested in this paper. The method is based on the adaptive growth rule of branch systems in nature that branches grow and branch off automatically towards such directions that can improve the global functional performance, such as the maximum absorption of sunlight or water It is expected that a plate or shell structure can achieve good mechanical performance if the stiffeners extend by obeying a similar adaptive growing and branching rule as branch systems in nature The stiffeners, starting from the so-called seeds. grow and branch off towards the direction with the maximum effectiveness of the global mechanical performance, which is dependent on the design sensitivity of the current structure. During the growth process, the volume increment is controlled so as to make it possible to create new branches and to eliminate degenerate branches. The validity and effectiveness of the suggested method are confirmed by some typical stiffener layout design problems.
机译:本文提出了一种新的有效的板壳结构加劲肋布局模式生成方法,以实现最小柔度,即所谓的自适应增长技术。该方法基于分支系统的自适应生长规则,自然而然,分支会自动朝着可以改善全局功能性能的方向生长和分支,例如可以最大程度地吸收阳光或水。如果加强筋通过遵循与自然界中的分支系统相似的适应性生长和分支规则进行延伸,则可以实现良好的机械性能。加强筋从所谓的种子开始。增长并朝着全球机械性能的最大有效性方向发展,这取决于当前结构的设计敏感性。在生长过程中,控制体积增量,以便可以创建新的分支并消除退化的分支。一些典型的加劲肋布局设计问题证实了该方法的有效性和有效性。

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