DocumentCode :
2406877
Title :
Large-eddy simulation and analysis of tip-clearance flows in turbomachinery applications
Author :
You, Donghyun ; Wang, Meng ; Moin, Parviz ; Mittal, Rajat
Author_Institution :
Stanford Univ., CA, USA
fYear :
2003
fDate :
9-13 June 2003
Firstpage :
180
Lastpage :
187
Abstract :
The tip-leakage flow in axial turbomachines is studied using large-eddy simulation with an emphasis on understanding the underlying mechanisms for low-pressure fluctuations and cavitations downstream of the tip-gap. Simulation results are validated against experimental measurements, and reasonable agreements are obtained. Dominant vortical structures such as the tip-leakage vortex and tip-separation vortices are examined, and their effects on the turbulent flow characteristics as well as on the low-pressure statistics are investigated. Analysis of the velocity and pressure fields suggests a high correlation between cavitations inception and the tip-leakage vortex. To suppress the tip-leakage vortex and the associated low-pressure events, the use of a grooved casing wall is explored, and preliminary simulation results show good promise. Additional simulations to investigate the effects of inflow vortices and tip-gap size are also discussed.
Keywords :
cavitation; computational fluid dynamics; flow simulation; hydraulic turbines; mechanical engineering computing; turbulence; vortices; axial turbomachine; cavitation vortical structure; grooved casing wall; large-eddy simulation; low-pressure fluctuation; tip-clearance flow; tip-leakage flow; turbulent flow; Acoustic noise; Analytical models; Computational modeling; Databases; Discrete event simulation; Fluctuations; Fuel pumps; Statistics; Turbomachinery; Underwater vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
User Group Conference, 2003. Proceedings
Print_ISBN :
0-7695-1953-9
Type :
conf
DOI :
10.1109/DODUGC.2003.1253390
Filename :
1253390
Link To Document :
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