Active flow control bump design using hybrid Nash-game coupled to evolutionary algorithms


Autoria(s): Lee, Dong-Seop; Periaux, Jacques; Gonzalez, Luis Felipe; Srinivas, Karkenahalli; Onate, Eugenio
Contribuinte(s)

Pereira, J.C.F.

Sequeira, A.

Pereira, J.M.C.

Data(s)

2010

Resumo

In this paper, the optimal design of an active flow control device; Shock Control Bump (SCB) on suction and pressure sides of transonic aerofoil to reduce transonic total drag is investigated. Two optimisation test cases are conducted using different advanced Evolutionary Algorithms (EAs); the first optimiser is the Hierarchical Asynchronous Parallel Evolutionary Algorithm (HAPMOEA) based on canonical Evolutionary Strategies (ES). The second optimiser is the HAPMOEA is hybridised with one of well-known Game Strategies; Nash-Game. Numerical results show that SCB significantly reduces the drag by 30% when compared to the baseline design. In addition, the use of a Nash-Game strategy as a pre-conditioner of global control saves computational cost up to 90% when compared to the first optimiser HAPMOEA.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/34100/

Publicador

ECCOMAS CFD

Relação

http://eprints.qut.edu.au/34100/3/34100.pdf

http://web.univ-ubs.fr/limatb/EG2M/Disc_Seminaire/ECCOMAS-CFD2010/default.htm

Lee, Dong-Seop, Periaux, Jacques, Gonzalez, Luis Felipe, Srinivas, Karkenahalli, & Onate, Eugenio (2010) Active flow control bump design using hybrid Nash-game coupled to evolutionary algorithms. In Pereira, J.C.F., Sequeira, A., & Pereira, J.M.C. (Eds.) Proceedings of V European Conference on Computational Fluid Dynamics ECCOMAS CFD 2010, ECCOMAS CFD, Lisbon, Portugal, , pp. 1-14.

Direitos

Copyright 2010 please consult the authors

Fonte

Australian Research Centre for Aerospace Automation; Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #010303 Optimisation #090100 AEROSPACE ENGINEERING #090104 Aircraft Performance and Flight Control Systems #Active Flow Control #Hybrid Optimisation #UAV #UAS #CFD #Shape Optimisation #Evolutionary Algorithm #Nash-Game
Tipo

Conference Paper