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Surrogate modeling in design optimization of stiffened composite shells

机译:加筋复合材料壳设计优化中的替代模型

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The development of an optimization design procedure for stiffened composite shells has emerged as an essential component in overcoming the challenge of deriving design guidelines with a reasonable amount of tested structures. The optimization procedure is based on the building of surrogate models employing the experimental design and response surface methodology. Surrogate models are built using continuous and discrete quantitative parameters and approximated with global and local nonparametric approximations. The numerical data obtained from finite element simulations of composite stiffened shells subjected to buckling and post-buckling is used for the building of surrogate models. Additionally a data set of natural experiments has been implemented into surrogate models showing high efficiency in the estimation of the post-buckling behavior of the stiffened composite shells (panels). The resulting design procedure provides an effective optimal design tool for the preliminary study of composite stiffened shells.
机译:硬化复合材料壳的优化设计程序的开发已成为克服用合理数量的经过测试的结构得出设计准则的挑战的必要组成部分。优化过程是基于采用实验设计和响应面方法的替代模型的建立。替代模型是使用连续和离散的定量参数构建的,并使用全局和局部非参数近似值进行近似。从复合材料加劲壳的屈曲和后屈曲的有限元模拟获得的数值数据用于建立替代模型。另外,已经在替代模型中实施了一组自然实验的数据集,这些模型显示出在评估加劲的复合材料壳(面板)的屈曲后行为方面的高效率。由此产生的设计程序为复合材料加劲壳的初步研究提供了有效的最佳设计工具。

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