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Cryogenic Tank Structure Sizing With Structural Optimization Method

机译:结构优化方法的低温储罐结构尺寸确定

摘要

Structural optimization methods in MSC /NASTRAN are used to size substructures and to reduce the weight of a composite sandwich cryogenic tank for future launch vehicles. Because the feasible design space of this problem is non-convex, many local minima are found. This non-convex problem is investigated in detail by conducting a series of analyses along a design line connecting two feasible designs. Strain constraint violations occur for some design points along the design line. Since MSC/NASTRAN uses gradient-based optimization procedures. it does not guarantee that the lowest weight design can be found. In this study, a simple procedure is introduced to create a new starting point based on design variable values from previous optimization analyses. Optimization analysis using this new starting point can produce a lower weight design. Detailed inputs for setting up the MSC/NASTRAN optimization analysis and final tank design results are presented in this paper. Approaches for obtaining further weight reductions are also discussed.
机译:MSC / NASTRAN中的结构优化方法用于确定子结构的尺寸并减轻复合夹层低温罐的重量,以用于未来的运载火箭。由于此问题的可行设计空间是非凸的,因此找到了许多局部最小值。通过沿着连接两个可行设计的设计线进行一系列分析,可以详细研究此非凸问题。沿设计线的某些设计点会发生违反应变约束的情况。由于MSC / NASTRAN使用基于梯度的优化过程。它不保证可以找到重量最轻的设计。在这项研究中,引入了一个简单的过程来根据先前优化分析中的设计变量值创建新的起点。使用这个新的起点进行优化分析可以产生重量更轻的设计。本文介绍了用于设置MSC / NASTRAN优化分析和最终储罐设计结果的详细输入。还讨论了获得进一步减轻重量的方法。

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