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Results 11-19 of 19 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2018The influence of aspect ratio on the iso-thermal flow characteristics of multiple confined jetsLong, S.; Lau, T.; Chinnici, A.; Tian, Z.; Dally, B.; Nathan, G.
2016A novel solar expanding-vortex particle reactor: experimental and numerical investigation of the iso-thermal flow field and particle depositionChinnici, A.; Arjomandi, M.; Tian, Z.; Nathan, G.
2019Thermal performance analysis of a syngas-fuelled hybrid solar receiver combustor operated in the MILD combustion regimeChinnici, A.; Tian, Z.; Lim, J.; Nathan, G.; Dally, B.
2015A novel solar expanding-vortex particle reactor: influence of vortex structure on particle residence times and trajectoriesChinnici, A.; Arjomandi, M.; Tian, Z.; Lu, Z.; Nathan, G.
2019The influence of wall temperature distribution on the mixed convective losses from a heated cavityLee, K.L.; Chinnici, A.; Jafarian, M.; Arjomandi, M.; Dally, B.; Nathan, G.
2017Experimental and numerical investigation of the flow characteristics within a Solar Expanding-Vortex Particle Receiver-ReactorChinnici, A.; Xue, Y.; Lau, T.; Arjomandi, M.; Nathan, G.
2016Assessment of the potential benefits and constraints of a hybrid solar receiver and combustor operated in the MILD combustion regimeLim, J.; Chinnici, A.; Dally, B.; Nathan, G.
2017Comparison of system performance in a hybrid solar receiver combustor operating with MILD and conventional combustion. Part II: Effect of the combustion modeChinnici, A.; Tian, Z.; Lim, J.; Nathan, G.; Dally, B.
2017Comparison of system performance in a hybrid solar receiver combustor operating with MILD and conventional combustion. Part I: Solar-only and combustion-only employing conventional combustionChinnici, A.; Tian, Z.; Lim, J.; Nathan, G.; Dally, B.