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Results 1-10 of 26 (Search time: 0.009 seconds).
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PreviewIssue DateTitleAuthor(s)
2005Proceedings of the 4th Australian Conference on Laser Diagnostics in Fluid Mechanics and CombustionAlwahabi, Z.; Dally, B.; Kalt, P.; Nathan, G.; Wong, C.
2017Optical thermometry for high temperature multiphase environments under high-flux irradiationGu, D.; Sun, Z.; Nathan, G.; Dong, X.; Dally, B.; Medwell, P.; Alwahabi, Z.
2009Development of temperature imaging using two-line atomic fluorescenceMedwell, P.; Chan, Q.; Kalt, P.; Alwahabi, Z.; Dally, B.; Nathan, G.
2010Effect of a uniform electric field on soot in laminar premixed ethylene/air flamesWang, Y.; Nathan, G.; Alwahabi, Z.; King, K.; Ho, J.; Yao, Q.
2017Research challenges in combustion and gasification arising from emerging technologies employing directly irradiated concentrating solar thermal radiationNathan, G.; Dally, B.; Alwahabi, Z.; van Eyk, P.; Jafarian, M.; Ashman, P.
2019A new correlation between soot sheet width and soot volume fraction in turbulent non-premixed jet flamesMahmoud, S.; Lau, T.; Nathan, G.; Medwell, P.; Alwahabi, Z.; Dally, B.
2016The influence of high flux broadband irradiation on soot concentration and temperature of a sooty flameDong, X.; Sun, Z.; Gu, D.; Ashman, P.; Alwahabi, Z.; Dally, B.; Nathan, G.
2015Planar laser-induced incandescence of turbulent sooting flames: the influence of beam steering and signal trappingSun, Z.; Alwahabi, Z.; Gu, D.; Mahmoud, S.; Nathan, G.; Dally, B.
2015Mechanism for laser-induced fluorescence signal generation in a nanoparticle-seeded flow for planar flame thermometryGu, D.; Sun, Z.; Medwell, P.; Alwahabi, Z.; Dally, B.; Nathan, G.
2009Soot volume fraction in a piloted turbulent jet non-premixed flame of natural gasQamar, N.; Alwahabi, Z.; Chan, Q.; Nathan, G.; Roekaerts, D.; King, K.