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Design Optimization of the Interim Support of the ITER Lower Cryostat Thermal Shield Using a Metamodel

机译:使用元模型对ITER下层低温恒温器隔热板的临时支撑进行设计优化

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The ITER lower cryostat thermal shield (LCTS) is fixed to the cryostat floor by thin flexible plate supports made of titanium alloy. A 500-mm high and 12-mm thick plate support is adopted as a reference design. However, design optimization is requested to save manufacturing costs, because the titanium alloy is expensive to fabricate. In addition to the reduction in mass, a design study was performed by using stainless steel as an alternative material for better manufacturability. This paper describes the design process to find an optimal design of the interim support of the LCTS. The sensitivity of the design variables, such as thickness, height, and width of the plates, is investigated. The optimal design is obtained by a sequential quadratic programming algorithm based on a metamodel developed by randomly selected experimental samples. Through the design optimization process, the optimal design of the interim support of the LCTS support is obtained.
机译:ITER下部低温恒温器隔热罩(LCTS)通过钛合金制成的薄板支撑固定在低温恒温器底板上。参考设计采用500毫米高和12毫米厚的板支撑。然而,由于钛合金的制造昂贵,因此需要优化设计以节省制造成本。除了减轻质量外,还通过使用不锈钢作为替代材料来进行设计研究,以提高制造性。本文介绍了设计过程,以寻找LCT​​S过渡支持的最佳设计。研究了设计变量的敏感性,例如板的厚度,高度和宽度。通过基于随机选择的实验样本开发的元模型的顺序二次编程算法,可以获得最佳设计。通过设计优化过程,获得了LCTS支架过渡支架的最优设计。

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