Effective implementation of nonlinear constraints in optimization of three-dimensional transonic wings | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2015. № 1(33).

Effective implementation of nonlinear constraints in optimization of three-dimensional transonic wings

A new approach to effective implementation of non-linear constraints for optimization problems solving using genetic algorithms (GA) is proposed. The feature of the approach is to change the traditional strategy in which the search path can only pass through permissible (satisfying the constraints) point by admitting routes passing through both valid and invalid points. The basic idea of this approach is that the information from the "forbidden" (i.e., not satisfying the constraints) areas can be very important, and the path to the optimal point that runs through these areas can appear to be much shorter. The method was applied to the problem of multiobjective optimization of aerodynamic shapes depending on different geometrical and aerodynamic constraints. The results showed that the method maintains high reliability with preservation of the traditional GA computational costs (in the calculation of the objective function on the basis of the full Navier-Stokes equations) at an acceptable level.

Download file
Counter downloads: 332

Keywords

Навье - Стокса, трехмерные трансзвуковые крылья, нелинейные ограничения, генетические алгоритмы, Условная оптимизация, three-dimensional transonic wings, Navier - Stokes equations, nonlinear constraints, genetic algorithms, Conditional optimization

Authors

NameOrganizationE-mail
Orlov Sergey AleksandrovichTomsk State Universityorlov@ftf.tsu.ru
Peigin Sergey VladimirovichTomsk State Universitymishpahat_peiguine@yahoo.com
Stepanov Kiril AleksandrovichTomsk State Universitykirill.stepanov.90@mail.ru
Timchenko Sergey ViktorovichTomsk State Universitytsv@ftf.tsu.ru
Всего: 4

References

Казаков В.Ю. , Пейгин С.В., Тимченко С.В. Оптимизация траектории входа в атмосферу земли по интегральному тепловому потоку // ЖПМТФ. 2000. Т. 41. № 4. С. 112-121.
Epstein B., Peigin S.V. Implementation of WENO (Weighted Essentially Non-oscillatory) Approach to Navier-Stokes Computations // International Journal of CFD. 2004. V. 18. No. 3.
Epstein B. Averbuch A. and Yavneh I. An accurate ENO driven multigrid method applied to 3D turbulent transonic flows // Journal of Computational Physics. 2001. V. 168. P. 316-328.
Harten A., Osher S. Uniformly high-order accurate non-oscillatory schemes // I. SIAM Journal of Numerical Analysis. 1987. V. 24. P. 279.
Shu C.-W. and Osher S. Efficient implementation of essentially non-oscillatory shock capturing schemes 1 // Journal of Computational Physics. 1989. V. 83. No. 1. 1989. P. 3
Пейгин С.В., Periaux J., Тимченко С.В. Применение генетических алгоритмов для оптимизации формы тела по тепловому потоку // Математическое моделирование. 1998. Т. 10. № 9. C. 111-122.
Holland J.H. Adaptation in natural and artificial systems. Ann Arbor: The University of Michigan Press, 1975.
Michalewicz Z. Genetic algorithms + data structures = evolution programs. New York: Springer-Verlag, 1992. Artificial Intelligence.
 Effective implementation of nonlinear constraints in optimization of three-dimensional transonic wings | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2015. № 1(33).

Effective implementation of nonlinear constraints in optimization of three-dimensional transonic wings | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2015. № 1(33).

Download full-text version
Counter downloads: 903