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Reliability Sensitivity Analysis and Design Optimization of Composite Structures Based on Response Surface MethodologyThis report discusses the development and application of two alternative strategies in the form of global and sequential local response surface (RS) techniques for the solution of reliability-based optimization (RBO) problems. The problem of a thin-walled composite circular cylinder under axial buckling instability is used as a demonstrative example. In this case, the global technique uses a single second-order RS model to estimate the axial buckling load over the entire feasible design space (FDS) whereas the local technique uses multiple first-order RS models with each applied to a small subregion of FDS. Alternative methods for the calculation of unknown coefficients in each RS model are explored prior to the solution of the optimization problem. The example RBO problem is formulated as a function of 23 uncorrelated random variables that include material properties, thickness and orientation angle of each ply, cylinder diameter and length, as well as the applied load. The mean values of the 8 ply thicknesses are treated as independent design variables. While the coefficients of variation of all random variables are held fixed, the standard deviations of ply thicknesses can vary during the optimization process as a result of changes in the design variables. The structural reliability analysis is based on the first-order reliability method with reliability index treated as the design constraint. In addition to the probabilistic sensitivity analysis of reliability index, the results of the RBO problem are presented for different combinations of cylinder length and diameter and laminate ply patterns. The two strategies are found to produce similar results in terms of accuracy with the sequential local RS technique having a considerably better computational efficiency.
Document ID
20030065883
Acquisition Source
Langley Research Center
Document Type
Contractor or Grantee Report
Authors
Rais-Rohani, Masoud
(Mississippi State Univ. Mississippi State, MS, United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2003
Subject Category
Structural Mechanics
Funding Number(s)
CONTRACT_GRANT: NAG1-02099
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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