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Healing Temperature of Hybrid Structures Based on Genetic Algorithm

Healing Temperature of Hybrid Structures Based on Genetic Algorithm
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摘要 The healing temperature of suspen-dome with stacked arches(SDSA)and arch-supported single-layer lattice shell structures was investigated based on the genetic algorithm. The temperature field of arch under solar radiation was derived by FLUENT to investigate the influence of solar radiation on the determination of the healing temperature. Moreover, a multi-scale model was established to apply the complex temperature field under solar radiation. The change in the mechanical response of these two kinds of structures with the healing temperature was discussed. It can be concluded that solar radiation has great influence on the healing temperature, and the genetic algorithm can be effectively used in the optimization of the healing temperature for hybrid structures. The healing temperature of suspen-dome with stacked arches(SDSA)and arch-supported single-layer lattice shell structures was investigated based on the genetic algorithm. The temperature field of arch under solar radiation was derived by FLUENT to investigate the influence of solar radiation on the determination of the healing temperature. Moreover, a multi-scale model was established to apply the complex temperature field under solar radiation. The change in the mechanical response of these two kinds of structures with the healing temperature was discussed. It can be concluded that solar radiation has great influence on the healing temperature, and the genetic algorithm can be effectively used in the optimization of the healing temperature for hybrid structures.
出处 《Transactions of Tianjin University》 EI CAS 2016年第1期64-71,共8页 天津大学学报(英文版)
基金 Supported by the National Natural Science Foundation of China(No.51208355)
关键词 healing temperature genetic algorithm solar radiation strain energy multi-scale model multi-point constraint equation 复杂温度场 混合结构 遗传算法 愈合 太阳辐射 单层网壳结构 多尺度模型 穹顶结构
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