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Crashworthiness design optimization using successive response surface approximations

delete2002-10-01
delete229
PRE
AI
H
Hasan Kurtaran
A
Azim Eskandarian *
D
Dhafer Marzougui
N
Nabih E. Bedewi
DOI:10.1007/s00466-002-0351-xdelete
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摘要

摘要

En 中文
Finite Element (FE) method is among the most powerful tools for crash analysis and simulation. Crashworthiness design of structural members requires repetitive and iterative application of FE simulation. This paper presents a crashworthiness design optimization methodology based on efficient and effective integration of optimization methods, FE simulations, and approximation methods. Optimization methods, although effective in general in solving structural design problems, loose their power in crashworthiness design. Objective and constraint functions in crashworthiness optimization problems are often non-smooth and highly non-linear in terms of design variables and follow from a computationally costly (FE) simulation. In this paper, a sequential approximate optimization method is utilized to deal with both the high computational cost and the non-smooth character. Crashworthiness optimization problem is divided into a series of simpler sub-problems, which are generated using approximations of objective and constraint functions. Approximations are constructed by using statistical model building technique, Response Surface Methodology (RSM) and a Genetic algorithm. The approximate optimization method is applied to solve crashworthiness design problems. These include a cylinder, a simplified vehicle and New Jersey concrete barrier optimization. The results demonstrate that the method is efficient and effective in solving crashworthiness design optimization problems.
Keyword:
response surface methodology
crashworthiness
design optimization
finite element method

期刊

Computational Mechanics 封面图
Computational Mechanics
IF:
3.8
论文数:
3.2K
被引数:
9.0K

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