Characterisation of electric discharge in laminar flow with optical diagnostics
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P. Vervisch | A. Cessou | C. Lacour | F. Lefebvre | B. Lecordier | A. Lo | J. Marrero
[1] P. Vervisch,et al. Assessment of a fast electro-optical shutter for 1D spontaneous Raman scattering in flames , 2015 .
[2] Jack L. Ziegler,et al. Investigation of the effect of electrode geometry on spark ignition , 2015 .
[3] Brandon Sforzo,et al. Post discharge evolution of a spark igniter kernel , 2015 .
[4] P. Vervisch,et al. 1D single-shot thermometry in flames by Spontaneous Raman Scattering through a fast electro-optical shutter , 2014 .
[5] P. Vervisch,et al. Spontaneous Raman scattering: a useful tool for investigating the afterglow of nanosecond scale discharges in air , 2012 .
[6] M. Shneider. Turbulent decay of after-spark channels , 2006 .
[7] Cyprien Ternel. Contribution au développement de l'allumage par laser pour les moteurs à combustion interne , 2006 .
[8] Antonio D'Alessio,et al. Development of hot nitrogen kernel, produced by a very fast spark discharge , 1989 .
[9] R. Maly,et al. Ignition of lean methane-air mixtures by high pressure glow and ARC discharges , 1985 .
[10] John C. Hilliard,et al. Fuel economy in road vehicles powered by spark ignition engines , 1984 .
[11] R. Maly,et al. Ignition model for spark discharges and the early phase of flame front growth , 1981 .
[12] R. Maly,et al. Initiation and propagation of flame fronts in lean CH4-air mixtures by the three modes of the ignition spark , 1979 .