NASA NTRS · 20010043662
Cryogenic Tank Structure Sizing With Structural Optimization Method
Abstract
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.
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Wang, J. T., Johnson, T. F., Sleight, D. W., Saether, E.. 2001-01-01. Cryogenic Tank Structure Sizing With Structural Optimization Method. https://ntrs.nasa.gov/citations/20010043662
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