The present paper numerically investigates the stall inception mechanisms in a centrifugal compressor stage composed of a splittered unshrouded impeller and a vaned diffuser. Unsteady numerical simulations have been conducted on a calculation domain comprising all the blade passages over 360 deg for the impeller and the diffuser. Three stable operating points are simulated along a speed line, and the full path to instability is investigated. The paper focusses first on the effects of the mass flow reduction on the flow topology at the inlet of both components. Then, a detailed analysis of stall inception mechanisms is proposed. It is shown that at the inlet of both components, the mass flow reduction induces boundary layer separation on the blade suction side, which results in a vortex tube having its upper end at the casing and its lower end at the blade wall. Some similarities with flows in axial compressor operating at stall condition are outlined. The stall inception process starts with the growth of the amplitude of a modal wave rotating in the vaneless space. As the flow in the compressor is subsonic, the wave propagates upstream and interacts with the impeller flow structure. This interaction leads to the drop in the impeller pressure ratio.
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December 2016
Research-Article
Numerical Simulation of Stall Inception Mechanisms in a Centrifugal Compressor With Vaned Diffuser
Y. Bousquet,
Y. Bousquet
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Yannick.Bousquet@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Yannick.Bousquet@isae.fr
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N. Binder,
N. Binder
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Nicolas.Binder@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Nicolas.Binder@isae.fr
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G. Dufour,
G. Dufour
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Guillaume.Dufour@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Guillaume.Dufour@isae.fr
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X. Carbonneau,
X. Carbonneau
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Xavier.Carbonneau@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Xavier.Carbonneau@isae.fr
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M. Roumeas,
M. Roumeas
Liebherr-Aerospace Toulouse SAS,
408 Avenue des Etats Unis,
Toulouse 31016, France
e-mail: Mathieu.Roumeas@liebherr.fr
408 Avenue des Etats Unis,
Toulouse 31016, France
e-mail: Mathieu.Roumeas@liebherr.fr
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I. Trebinjac
I. Trebinjac
Laboratoire de Mécanique des,
Fluides et d'Acoustique,
UMR CNRS 5509 Ecole Centrale de Lyon,
UCB Lyon 1,
INSA,
36 Avenue Guy de Collongue,
Ecully Cedex 69134, France
Fluides et d'Acoustique,
UMR CNRS 5509 Ecole Centrale de Lyon,
UCB Lyon 1,
INSA,
36 Avenue Guy de Collongue,
Ecully Cedex 69134, France
Search for other works by this author on:
Y. Bousquet
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Yannick.Bousquet@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Yannick.Bousquet@isae.fr
N. Binder
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Nicolas.Binder@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Nicolas.Binder@isae.fr
G. Dufour
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Guillaume.Dufour@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Guillaume.Dufour@isae.fr
X. Carbonneau
ISAE,
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Xavier.Carbonneau@isae.fr
Université de Toulouse,
10 Avenue Edouard Belin BP 54032,
Cedex 4,
Toulouse 31055, France
e-mail: Xavier.Carbonneau@isae.fr
M. Roumeas
Liebherr-Aerospace Toulouse SAS,
408 Avenue des Etats Unis,
Toulouse 31016, France
e-mail: Mathieu.Roumeas@liebherr.fr
408 Avenue des Etats Unis,
Toulouse 31016, France
e-mail: Mathieu.Roumeas@liebherr.fr
I. Trebinjac
Laboratoire de Mécanique des,
Fluides et d'Acoustique,
UMR CNRS 5509 Ecole Centrale de Lyon,
UCB Lyon 1,
INSA,
36 Avenue Guy de Collongue,
Ecully Cedex 69134, France
Fluides et d'Acoustique,
UMR CNRS 5509 Ecole Centrale de Lyon,
UCB Lyon 1,
INSA,
36 Avenue Guy de Collongue,
Ecully Cedex 69134, France
1Corresponding author.
Manuscript received November 16, 2015; final manuscript received May 20, 2016; published online June 14, 2016. Assoc. Editor: Ricardo F. Martinez-Botas.
J. Turbomach. Dec 2016, 138(12): 121005 (9 pages)
Published Online: June 14, 2016
Article history
Received:
November 16, 2015
Revised:
May 20, 2016
Citation
Bousquet, Y., Binder, N., Dufour, G., Carbonneau, X., Roumeas, M., and Trebinjac, I. (June 14, 2016). "Numerical Simulation of Stall Inception Mechanisms in a Centrifugal Compressor With Vaned Diffuser." ASME. J. Turbomach. December 2016; 138(12): 121005. https://doi.org/10.1115/1.4033704
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