Numerical Investigations on the Rotating ...
Document type :
Communication dans un congrès avec actes
Title :
Numerical Investigations on the Rotating Stall in an Axial Compressor and its Control by Flow Injection at Casing
Author(s) :
Marty, Julien [Auteur]
DAAA, ONERA, Université Paris Saclay [Meudon]
Castillon, Lionel [Auteur]
DAAA, ONERA, Université Paris Saclay [Meudon]
Joseph, Pierric [Auteur]
Laboratoire de Mécanique des Fluides de Lille - Kampé de Fériet [LMFL]
DAAA, ONERA, Université Paris Saclay [Meudon]
Castillon, Lionel [Auteur]
DAAA, ONERA, Université Paris Saclay [Meudon]
Joseph, Pierric [Auteur]
Laboratoire de Mécanique des Fluides de Lille - Kampé de Fériet [LMFL]
Conference title :
Turbomachinery Technical Conference and Exposition GT2022
City :
Rotterdam
Country :
Pays-Bas
Start date of the conference :
2022-06-13
Book title :
Proceedings of ASME Turbo Expo 2022 Turbomachinery Technical Conference and Exposition GT2022 June 13-17, 2022, Rotterdam, The Netherlands
Publisher :
ASME
Publication date :
2022-06
HAL domain(s) :
Sciences de l'ingénieur [physics]/Mécanique [physics.med-ph]/Mécanique des fluides [physics.class-ph]
French abstract :
The operating range of a compressor is limited by surge or rotating stall line, among others. Numerical simulations must accurately predict these phenomena. This study is based on the experimental compressor CME2, which ...
Show more >The operating range of a compressor is limited by surge or rotating stall line, among others. Numerical simulations must accurately predict these phenomena. This study is based on the experimental compressor CME2, which is a low-subsonic axial compressor. This compressor is tip-critical as the rotor tip is responsible for the rotating stall. This paper shows that the rotating stall onset flow rate is well captured by CFD, compared to experiments. After ten revolutions, all cells are merged and only one cell remains, as in experiments.Active flow control improves compressor performance and extends the stable operating range. In the present configuration, flow injection is performed at the casing. In the simulation, the insertion of the actuators is carried out through hybrid meshes: structured mesh for blade passages and unstructured mesh for each actuator. For the some stalled operating points of baseline configuration, there is no rotating cells in the controlled configuration. Thus, the rotating stall is delayed at lower flow rate, as expected by the use of activeShow less >
Show more >The operating range of a compressor is limited by surge or rotating stall line, among others. Numerical simulations must accurately predict these phenomena. This study is based on the experimental compressor CME2, which is a low-subsonic axial compressor. This compressor is tip-critical as the rotor tip is responsible for the rotating stall. This paper shows that the rotating stall onset flow rate is well captured by CFD, compared to experiments. After ten revolutions, all cells are merged and only one cell remains, as in experiments.Active flow control improves compressor performance and extends the stable operating range. In the present configuration, flow injection is performed at the casing. In the simulation, the insertion of the actuators is carried out through hybrid meshes: structured mesh for blade passages and unstructured mesh for each actuator. For the some stalled operating points of baseline configuration, there is no rotating cells in the controlled configuration. Thus, the rotating stall is delayed at lower flow rate, as expected by the use of activeShow less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Source :
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