Pilot hydrogen enhanced combustion in an ethylene-fueled scramjet combustor at Mach 4
暂无分享,去创建一个
Ye Tian | J. Le | Wenzhen Shi | Fuyu Zhong
[1] J. Freund,et al. Laser-Induced Plasma Ignition Experiments in a Direct-Connect Supersonic Combustor at Mach 3 , 2019, Journal of Propulsion and Power.
[2] Y. Ju,et al. Flame Propagation in Millimeter-Scale Tubes for Lean Ethylene–Oxygen Mixtures , 2020 .
[3] Shun-hua Yang,et al. Investigation of fluctuating characteristics of wall shear stress in supersonic flow , 2019 .
[4] G. Park,et al. Flameholding characteristics of ethylene-fueled model scramjet in shock tunnel , 2019, Acta Astronautica.
[5] Tonghun Lee,et al. Dual-Mode Operation and Transition in Axisymmetric Scramjets , 2019, AIAA Journal.
[6] Zhenguo Wang,et al. Characteristics of hydrogen jet combustion in a high-enthalpy supersonic crossflow , 2019, Physics of Fluids.
[7] Zhenguo Wang,et al. Characteristics of a Cavity-Stabilized Hydrogen Jet Flame in a Model Scramjet Combustor , 2019, AIAA Journal.
[8] Zhi-wei Hu,et al. Mixing in nearwall regions downstream of a sonic jet in a supersonic crossflow at Mach 2.7 , 2018, Physics of Fluids.
[9] Zhenguo Wang,et al. Laser-Induced Plasma Ignition in a Cavity-Based Scramjet Combustor , 2018, AIAA Journal.
[10] Javier Urzay,et al. Supersonic Combustion in Air-Breathing Propulsion Systems for Hypersonic Flight , 2018 .
[11] Luca M. L. Cantu,et al. Development of a Premixed Combustion Capability for Dual-Mode Scramjet Experiments. , 2017, Journal of propulsion and power.
[12] Luca M. L. Cantu,et al. Aerodynamic Characterization of a Cavity Flameholder in a Premixed Dual-Mode Scramjet , 2017 .
[13] Jialing Le,et al. Investigation of combustion process of a kerosene fueled combustor with air throttling , 2017 .
[14] Campbell D. Carter,et al. Influences of Inlet Geometry Modification on Scramjet Flow and Combustion Dynamics , 2017 .
[15] C. Carter,et al. Influences of Freestream Turbulence on Flame Dynamics in a Supersonic Combustor , 2017 .
[16] Jianhan Liang,et al. Experimental investigation on combustion performance of cavity-strut injection of supercritical kerosene in supersonic model combustor , 2016 .
[17] Ye Tian,et al. Numerical study on effect of air throttling on combustion mode formation and transition in a dual-mode scramjet combustor , 2016 .
[18] Debasis Chakraborty,et al. Numerical exploration of mixing and combustion in ethylene fueled scramjet combustor , 2015 .
[19] S. Leonov,et al. Ignition and flameholding in a supersonic combustor by an electrical discharge combined with a fuel injector , 2015 .
[20] Zhenguo Wang,et al. Mixing-related low frequency oscillation of combustion in an ethylene-fueled supersonic combustor , 2015 .
[21] Andrea Passaro,et al. Ethylene Flame Dynamics and Inlet Unstart in a Model Scramjet , 2014 .
[22] Haiyan Wu,et al. Combustion modes of hydrogen jet combustion in a cavity-based supersonic combustor , 2013 .
[23] Harald Kleine,et al. Laser-induced plasma ignition studies in a model scramjet engine , 2013 .
[24] Jianhan Liang,et al. Spark ignition process in a scramjet combustor fueled by hydrogen and equipped with multi-cavities at Mach 4 flight condition , 2012 .
[25] Jianhan Liang,et al. Flame Characteristics in Supersonic Combustor with Hydrogen Injection Upstream of Cavity Flameholder , 2008 .
[26] Ronald K. Hanson,et al. Time evolution and mixing characteristics of hydrogen and ethylene transverse jets in supersonic crossflows , 2006 .
[27] Campbell D. Carter,et al. Stability limits of cavity-stabilized flames in supersonic flow , 2005 .
[28] F. Billig,et al. Supersonic Combustion Experiments with a Cavity-Based Fuel Injector (Postprint) , 2001 .
[29] C. J. Roy,et al. Numerical Simulation of a Three-Dimensional Flame/Shock Wave Interaction , 1998 .
[30] J. P. Drummond,et al. Numerical study of a ramjet dump combustor flowfield , 1983 .
[31] J. P. Drummond,et al. Numerical Study of a Scramjet Engine Flowfield , 1981 .