Optimal Design of Geodesically Stiffened Composite Cylindrical Shells

Optimal Design of Geodesically Stiffened Composite Cylindrical Shells
Author :
Publisher : Createspace Independent Publishing Platform
Total Pages : 228
Release :
ISBN-10 : 1724322427
ISBN-13 : 9781724322425
Rating : 4/5 (425 Downloads)

Book Synopsis Optimal Design of Geodesically Stiffened Composite Cylindrical Shells by : National Aeronautics and Space Administration (NASA)

Download or read book Optimal Design of Geodesically Stiffened Composite Cylindrical Shells written by National Aeronautics and Space Administration (NASA) and published by Createspace Independent Publishing Platform. This book was released on 2018-07-27 with total page 228 pages. Available in PDF, EPUB and Kindle. Book excerpt: An optimization system based on the finite element code Computations Structural Mechanics (CSM) Testbed and the optimization program, Automated Design Synthesis (ADS), is described. The optimization system can be used to obtain minimum-weight designs of composite stiffened structures. Ply thickness, ply orientations, and stiffener heights can be used as design variables. Buckling, displacement, and material failure constraints can be imposed on the design. The system is used to conduct a design study of geodesically stiffened shells. For comparison purposes, optimal designs of unstiffened shells and shells stiffened by rings and stingers are also obtained. Trends in the design of geodesically stiffened shells are identified. An approach to include local stress concentrations during the design optimization process is then presented. The method is based on a global/local analysis technique. It employs spline interpolation functions to determine displacements and rotations from a global model which are used as 'boundary conditions' for the local model. The organization of the strategy in the context of an optimization process is described. The method is validated with an example. Gendron, G. and Guerdal, Z. Unspecified Center NASA-CR-190706, NAS 1.26:190706, CCMS-92-23, VPI-E-92-20 NAG1-643...


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