DocumentCode :
2823033
Title :
Shape Optimization of Helico-axial Multiphase Pump Impeller Based on Genetic Algorithm
Author :
Zhang Jinya ; Zhu Hongwu ; Li Yan ; Yan, Li
Author_Institution :
Coll. of Mech. & Electron. Eng., China Univ. of Pet. (Beijing), Beijing, China
Volume :
4
fYear :
2009
fDate :
14-16 Aug. 2009
Firstpage :
408
Lastpage :
412
Abstract :
In this study, a shape optimization of impeller has been performed through a novel genetic algorithm based on optimization technique with pressure rise as objective function while the gas void fraction (GVF) is 30%. The major geometric parameters were selected as the optimizable parameters. Reynolds-averaged Navier - Stokes equations (RANS) with the standard k-epsilon turbulence model were used to obtain the performance of the impeller as the fitness value at every step of the optimization process. Through this optimal method, a set of better geometric parameters were gotten. Comparing of the inner flow field characters with original impeller, the new optimized one has the higher pressure rise, the more proper distribution of GVF. By this optimization, pressure rise was increased by 14.4% while GVF is 30%. The optimal result indicates that genetic algorithms combined the RANS provide a valuable tool for the optimal design of multiphase pump impeller.
Keywords :
Navier-Stokes equations; genetic algorithms; impellers; Reynolds-averaged Navier-Stokes equations; gas void fraction; genetic algorithm; helico-axial multiphase pump impeller; shape optimization; standard k-epsilon turbulence model; Aerodynamics; Algorithm design and analysis; Blades; Computational fluid dynamics; Design optimization; Genetic algorithms; Impellers; Machinery; Pumps; Shape; Genetic Algorithm; Impeller; Multiphase Pump; Shape Optimization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Natural Computation, 2009. ICNC '09. Fifth International Conference on
Conference_Location :
Tianjin
Print_ISBN :
978-0-7695-3736-8
Type :
conf
DOI :
10.1109/ICNC.2009.468
Filename :
5363691
Link To Document :
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