Stability limits of cavity-stabilized flames in supersonic flow
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Campbell D. Carter | Jeffrey M. Donbar | James F. Driscoll | Mark Gruber | C. Carter | J. Driscoll | K. Hsu | M. Gruber | J. Donbar | Kuang Yu Hsu | Chadwick C. Rasmussen | C. Rasmussen
[1] V. Katta,et al. Study on Trapped-Vortex Combustor-Effect of Injection on Flow Dynamics , 1998 .
[2] G. Winterfeld,et al. On processes of turbulent exchange behind flame holders , 1965 .
[3] J. A. Edwards,et al. The effect of trailing edge geometry on cavity flow oscillation driven by a supersonic shear layer , 1998, The Aeronautical Journal (1968).
[4] Vigor Yang,et al. Combustion oscillations in a scramjet engine combustor with transverse fuel injection , 2005 .
[5] Mark Gruber,et al. New supersonic combustion research facility , 1995 .
[6] F. Billig,et al. Supersonic Combustion Experiments with a Cavity-Based Fuel Injector (Postprint) , 2001 .
[7] Tarun Mathur,et al. Fundamental Studies of Cavity-Based Flameholder Concepts for Supersonic Combustors , 2001 .
[8] S. Plee,et al. Characteristic time correlation for lean blowoff of bluff-body-stabilized flames☆ , 1979 .
[9] Ronald K. Hanson,et al. Cavity Flame-Holders for Ignition and Flame Stabilization in Scramjets: An Overview , 2001 .
[10] L. Goss,et al. Characteristics of a Trapped-Vortex Combustor , 1998 .
[11] Campbell D. Carter,et al. Oh planar laser-induced fluoroescence imaging in a hydrocarbon-fueled scramjet combustor , 2000 .