DocumentCode :
1585582
Title :
Large Eddy Simulation on compound angle film cooling of turbine blades
Author :
Ling, Zhang ; Guoliang, Wen
Author_Institution :
Sch. of Energy & Power Eng., Northeast Dianli Univ., Jilin, China
Volume :
1
fYear :
2011
Firstpage :
282
Lastpage :
287
Abstract :
Large Eddy Simulation (LES) was performed to investigate the flow structures and the development process of vortices in different sections of a stationary gas turbine at M=1.5, while the jet hole of the leading edge has compound angle. The results show that the jet in a cross-flow is a highly complex turbulent flow due to the action of many structures in the field, including the jet shear-layer vortices, the system of horseshoe vortices, the counter-rotating vortex pair, and the wake vortices. The cooling effectiveness is better on the suction side and on the pressure side with laying compound angles film-cooling holes. The vortices in the centreplane are shed off to form new vortices periodically with period of 0.04s. The generation of CVP on the pressure side is earlier than that on the suction side and the effect of CVP on the pressure side is stronger than that on the suction side.
Keywords :
blades; cooling; film flow; flow simulation; gas turbines; jets; shear turbulence; vortices; wakes; compound angle film cooling; counter rotating vortex; flow structures simulation; horseshoe vortices; jet holes; large eddy simulation; shear layer vortices; suction; turbine blades; turbulent flow; wake vortices; Blades; Compounds; Cooling; Films; Mathematical model; Numerical models; Turbines; Film cooling; compound angles; counter-rotating vortex pair; large eddy simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Measurement & Instruments (ICEMI), 2011 10th International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-8158-3
Type :
conf
DOI :
10.1109/ICEMI.2011.6037732
Filename :
6037732
Link To Document :
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