A successful ignition in an annular multi-injector combustor follows a sequence of steps. The first injector is ignited; two arch-shaped flame branches nearly perpendicular to the combustor backplane form; they propagate, igniting each injection unit; they merge. In this paper, characterization of the propagation phase is performed in an annular combustor with spray flames fed with liquid n-hepane. The velocity and the direction of the arch-like flame branch are investigated. Near the backplane, the flame is moving in a purely azimuthal direction. Higher up in the chamber, it is also moving in the axial direction due to the volumetric expansion of the burnt gases. Time-resolved particle image velocimetry (PIV) measurements are used to investigate the evaporating fuel droplets dynamics. A new result is that, during the light-round, the incoming flame front pushes the fuel droplets in the azimuthal direction well before its leading point. This leads to a decrease in the local droplet concentration and local mixture composition over not yet lit injectors. For the first time, the behavior of an individual injector ignited by the passing flame front is examined. The swirling flame structure formed by each injection unit evolves in time. From the ignition of an individual injector to the stabilization of its flame in its final shape, approximately 50 ms elapse. After the passage of the traveling flame, the newly ignited flame flashbacks into the injector during a few milliseconds, for example, 5 ms for the conditions that are tested. This could be detrimental to the service life of the unit. Then, the flame exits from the injection unit, and its external branch detaches under the action of cooled burnt gases in the outer recirculation zone (ORZ).
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June 2019
Research-Article
Flame and Spray Dynamics During the Light-Round Process in an Annular System Equipped With Multiple Swirl Spray Injectors Available to Purchase
Kevin Prieur,
Kevin Prieur
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France;
Safran Tech,
E&P,
Châteaufort,
CS 80112,
Magny-Les-Hameaux 78772, France
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France;
Safran Tech,
E&P,
Châteaufort,
CS 80112,
Magny-Les-Hameaux 78772, France
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Guillaume Vignat,
Guillaume Vignat
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France,
e-mail: guillaume.vignat@centralesupelec.fr
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France,
e-mail: guillaume.vignat@centralesupelec.fr
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Daniel Durox,
Daniel Durox
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
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Thierry Schuller,
Thierry Schuller
Institut de Mécanique des Fluides de Toulouse,
IMFT,
Université de Toulouse, CNRS,
Toulouse, France
IMFT,
Université de Toulouse, CNRS,
Toulouse, France
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Sébastien Candel
Sébastien Candel
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
Search for other works by this author on:
Kevin Prieur
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France;
Safran Tech,
E&P,
Châteaufort,
CS 80112,
Magny-Les-Hameaux 78772, France
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France;
Safran Tech,
E&P,
Châteaufort,
CS 80112,
Magny-Les-Hameaux 78772, France
Guillaume Vignat
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France,
e-mail: guillaume.vignat@centralesupelec.fr
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France,
e-mail: guillaume.vignat@centralesupelec.fr
Daniel Durox
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
Thierry Schuller
Institut de Mécanique des Fluides de Toulouse,
IMFT,
Université de Toulouse, CNRS,
Toulouse, France
IMFT,
Université de Toulouse, CNRS,
Toulouse, France
Sébastien Candel
Laboratoire EM2C,
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
CNRS,
CentraleSupélec,
Université Paris-Saclay,
3, rue Joliot Curie,
Gif-sur-Yvette cedex 91192, France
1Corresponding author.
Manuscript received November 4, 2018; final manuscript received November 10, 2018; published online January 9, 2019. Editor: Jerzy T. Sawicki.
J. Eng. Gas Turbines Power. Jun 2019, 141(6): 061007 (11 pages)
Published Online: January 9, 2019
Article history
Received:
November 4, 2018
Revised:
November 10, 2018
Citation
Prieur, K., Vignat, G., Durox, D., Schuller, T., and Candel, S. (January 9, 2019). "Flame and Spray Dynamics During the Light-Round Process in an Annular System Equipped With Multiple Swirl Spray Injectors." ASME. J. Eng. Gas Turbines Power. June 2019; 141(6): 061007. https://doi.org/10.1115/1.4042024
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