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SELECTION OF VARIABLES FOR STRUCTURAL REDESIGN BY LARGE ADMISSIBLE PERTURBATIONS

机译:大型禁止扰动的结构重新设计的变量选择

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Redesign or inverse design is the process of generating a new optimal design which satisfies performance specifications starting from a baseline design with undesirable performance. The LargE Admissible Perturbation (LEAP) methodology makes it possible to redesign a structure for large changes in performance objectives and redesign variables without trial and error or repetitive finite element analyses. The next level of challenge in redesign automation is to identify a priori the structural elements and their properties that have the biggest impact and use only those in redesign. Based on LEAP, guidelines are developed in this paper for identifying effective selection of redesign variables for improved accuracy and reduced CPU time. These guidelines enable the designer to define the elements to be redesigned, to partition those elements among redesign groups, and to specify redesign variables in each group. In the numerical applications, an offshore tower is used to verify the developed guidelines. Three models of this tower with 160, 320, and 480 elements are used.
机译:重新设计或逆设计是产生新的最佳设计,满足性能规范从基线设计具有不希望的性能开始的过程。大容许扰动(LEAP)方法使得有可能重新设计用于在性能目标和重新设计变量大的变化的结构,而没有试错或重复的有限元分析。重新设计的自动化挑战的下一个级别是确定先验的结构元素和它们的属性具有最大的影响,只能使用重新设计的。基于LEAP,准则本文开发用于识别重新设计变量的有效选择用于改善的准确度和降低的CPU时间。这些准则使设计者能够确定重新设计的元素,进行分区重新设计组中的那些元件,并指定每组中的重新设计变量。在数字应用中,离岸塔是用来验证所开发的指导方针。该塔160,320,和480元的三种型号使用。

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