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  4. Large Eddy Simulation of the Rotating Stall in a Pump-Turbine Operated in Pumping Mode at a Part-Load Condition
 
research article

Large Eddy Simulation of the Rotating Stall in a Pump-Turbine Operated in Pumping Mode at a Part-Load Condition

Pacot, Olivier  
•
Kato, Chisachi
•
Guo, Yang
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2016
Journal Of Fluids Engineering-Transactions Of The Asme

The investigation of the rotating stall phenomenon appearing in the HYDRODYNA pump-turbine reduced scale model is carried out by performing a large-scale large eddy simulation (LES) computation using a mesh featuring approximately 85 x 10(6) elements. The internal flow is computed for the pump-turbine operated at 76% of the best efficiency point (BEP) in pumping mode, for which previous experimental research evidenced four rotating stall cells. To achieve an adequate resolution near the wall, the Reynolds number is decreased by a factor of 25 than that of the experiment, by assuming that the flow of our interest is not strongly affected by the Reynolds number. The computations are performed on the supercomputer PRIMEHPC FX10 of the University of Tokyo using the overset finite-element open source code FrontFlow/blue with the dynamic Smagorinsky turbulence model. It is shown that the rotating stall phenomenon is accurately simulated using the LES approach. The results show an excellent agreement with available experimental data from the reduced scale model tested at the EPFL Laboratory for hydraulic machines. The number of stall cells as well as the propagation speed agree well with the experiment. Detailed investigations on the computed flow fields have clarified the propagation mechanism of the stall cells.

  • Details
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Type
research article
DOI
10.1115/1.4033423
Web of Science ID

WOS:000385428000002

Author(s)
Pacot, Olivier  
Kato, Chisachi
Guo, Yang
Yamade, Yoshinobu
Avellan, Francois  
Date Issued

2016

Publisher

American Society of Mechanical Engineers

Published in
Journal Of Fluids Engineering-Transactions Of The Asme
Volume

138

Issue

11

Article Number

111102

Subjects

LES

•

pump-turbine

•

rotating stall

•

propagation mechanism

•

pumping mode

•

part-load condition

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMH  
Available on Infoscience
November 21, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/131360
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