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Stall Margin Improvement in an Axial Compressor by Continuous and Pulsed Tip Injection

Article dans une revue avec comité de lecture
Auteur
MOUBOGHA MOUBOGHA, Joseph
MARGALIDA, Gabriel
ROUSSETTE, Olivier
ccDAZIN, Antoine
531216 Laboratoire de Mécanique des Fluides de Lille - Kampé de Fériet [LMFL]
ccJOSEPH, Pierric

URI
http://hdl.handle.net/10985/22698
DOI
10.3390/ijtpp7010010
Date
2022-03
Journal
International Journal of Turbomachinery, Propulsion and Power

Résumé

Stall and surge are strong limitations in the operating range of compressors and thus one of the major limits of jet engine performance. A promising way to push the stability limit of compression machines is to inject a small amount of flow at the blade tip to alter the physical mechanism responsible for stall onset. This study focuses on the experimental performance of such a system. To do so, an axial compressor test bench was equipped with 40 actuators connected to an auxiliary pressurised air supply system. They were able to generate high-speed jet blowing just at the tip of the rotor blades. The opening of each actuator was controlled by an electromagnetic valve. This allowed generating continuous or pulsed jets with frequencies up to 500 Hz at different duty cycles. The performance of the control system was investigated for various control strategies, where the injected flow rate, the injection angle, the number of injectors, the jet frequency and the duty cycle were systematically varied. This paper is concluded by a study of the energy balance of the system for various configurations. To the best of the authors’ knowledge, this constitutes a rarely seen analysis in the literature.

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Documents liés

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  • Detailed Pressure Measurements During the Transition to Rotating Stall in an Axial Compressor: Influence of the Throttling Process 
    Communication avec acte
    MARGALIDA, Gabriel; ROUSSETTE, Olivier; ccDAZIN, Antoine; ccJOSEPH, Pierric (ASME, 2018)
    This paper presents experimental unsteady pressure measurements gathered on a single stage axial compressor during pre-stall and transition to stall operations. The aim of this study is to analyze the transition from a ...
  • Comparison and Sensibility Analysis of Warning Parameters for Rotating Stall Detection in an Axial Compressor 
    Article dans une revue avec comité de lecture
    MARGALIDA, Gabriel; ROUSSETTE, Olivier; ccDAZIN, Antoine; ccJOSEPH, Pierric (MDPI, 2020)
    The present paper aims at evaluating the surveillance parameters used for early stall warning in axial compressors, and is based on unsteady pressure measurements at the casing of a single stage axial compressor. Two ...
  • Pulsed air injection system characterization for stall margin improvement in an axial compressor 
    Communication avec acte
    MARGALIDA, Gabriel; ROUSSETTE, Olivier; DELVA, Jérôme; ccDAZIN, Antoine; ccJOSEPH, Pierric (EUCASS association, 2022-06-27)
    This paper presents the design and the characterization of a pulsed air injection system on a single stage axial compressor. The goal of this system is to delay the rotating stall onset and to extend the compressor operating ...
  • Active flow control in an axial compressor for stability improvement : On the effect of flow control on stall inception 
    Article dans une revue avec comité de lecture
    MARGALIDA, Gabriel; ROUSSETTE, Olivier; ccDAZIN, Antoine; ccJOSEPH, Pierric (Springer Verlag (Germany), 2021)
    In this paper, the effect of an active flow control system on the onset mechanism of rotating stall in an axial compressor is experimentally investigated. A particular emphasis is thus given on the flow patterns present ...
  • Experimental Flow Investigation Inside an Axial Compressor with Active Flow Control 
    Communication avec acte
    MOUBOGHA MOUBOGHA, Joseph; ROUSSETTE, Olivier; ccDAZIN, Antoine; ccJOSEPH, Pierric (ASME, 2022-06)
    This paper describes the experimental study of the flow behavior in a rotor blade channel of an axial compressor equipped with an Active Flow Control (AFC) system using Particle Image Velocimetry. The AFC system consists ...

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