首页> 外文期刊>Journal of Sound and Vibration >FREE VIBRATION ANALYSIS AND SHAPE OPTIMIZATION OF VARIABLE THICKNESS PLATES, PRISMATIC FOLDED PLATES AND CURVED SHELLS .2. SHAPE OPTIMIZATION
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FREE VIBRATION ANALYSIS AND SHAPE OPTIMIZATION OF VARIABLE THICKNESS PLATES, PRISMATIC FOLDED PLATES AND CURVED SHELLS .2. SHAPE OPTIMIZATION

机译:各种厚度的板,棱形折叠板和弯曲的壳体的自由振动分析和形状优化2。形状优化

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摘要

A robust computational tool which integrates FS analysis, parametric cubic spline geometry definition, sensitivity analysis and mathematical programming is developed for the optimization of the shape and thickness variation of prismatic folded plates and curved shell structures. The objective of the optimization process is to maximize the fundamental frequency. Both thickness and shape variables defining the cross-section of the structure are considered. The analysis is carried out by using curved, variable thickness finite strips, formulated and tested in Part 1 of this paper. To obtain the optimal shapes, semi-analytical sensitivity calculations are used in conjunction with a sequential quadratic programming optimization algorithm. Optimal shapes are presented for several shells and folded plates of variable thickness. [References: 12]
机译:一个强大的计算工具集成了FS分析,参数三次样条几何定义,灵敏度分析和数学程序设计,可优化棱柱形折叠板和弯曲壳体结构的形状和厚度变化。优化过程的目的是使基频最大化。定义结构横截面的厚度和形状变量都会被考虑。通过使用弯曲的,可变厚度的有限条带进行分析,该条带在本文的第1部分中进行了测试。为了获得最佳形状,半解析灵敏度计算与顺序二次规划优化算法结合使用。提出了几种厚度可变的外壳和折叠板的最佳形状。 [参考:12]

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