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Optimization of a supersonic wind tunnel diffuser using genetic algorithm

Said Farahat (Department of Mechanical Engineering, University of Sistan and Baluchestan, Zahedan, Iran)
Seyyed Morteza Javadpour (Department of Mechanical Engineering, University of Sistan and Baluchestan, Zahedan, Iran)
Hesamodin Ebnodin Hamidi (Department of Aerospace Engineering, Science and Research Branch Islamic Azad University, Tehran, Iran)
Ebrahim Kadivar (Technical University of Clausthal, Clausthal-Zellerfeld, Germany)

Engineering Computations

ISSN: 0264-4401

Article publication date: 3 August 2015

336

Abstract

Purpose

The purpose of this paper is to find the optimum design of diffuser of supersonic wind tunnel in order to access the minimum overall pressure drop in wind tunnel, using evolutionary algorithm.

Design/methodology/approach

The authors developed a genetic algorithm (GA) code to calculate the shape of a diffuser with flexible walls in order to have the maximum pressure recovery. The two-dimensional turbulent and compressible flow was analyzed numerically using shear-stress transport and Advection Upstream Splitting Method (AUSM)+ turbulence models and its optimization with GA.

Findings

The results of this study indicate that elitist GA promises a powerful method for optimization of the wind tunnel diffuser. Separation zone is reduced by 22.2 percent at the convergent part of diffuser and 56 percent at the divergent part of diffuser. The efficiency of new optimized wind tunnel diffuser increased by 83 percent in comparison to the sample of supersonic wind tunnel.

Originality/value

It has been observed that AUSM+ method and shape design optimization using GA are robust and efficient technique to optimize wind tunnel diffuser.

Keywords

Acknowledgements

This work was supported by Iran Aerodynamic Research Center and gratefully acknowledged by the authors.

Citation

Farahat, S., Javadpour, S.M., Hamidi, H.E. and Kadivar, E. (2015), "Optimization of a supersonic wind tunnel diffuser using genetic algorithm", Engineering Computations, Vol. 32 No. 6, pp. 1691-1707. https://doi.org/10.1108/EC-04-2014-0077

Publisher

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Emerald Group Publishing Limited

Copyright © 2015, Emerald Group Publishing Limited

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