Initiation and Propagation Processes of Rotating Detonation Wave Based on Pre-Detonation Tube
1.School of Mechanical and Engineering,Nanjing University of Science and Technology,Nanjing 210094,China;2.Office of the First Military Representative of the Armaments Department in Beijing,Beijing 100042,China;3.State Key Laboratory of Laser Propulsion and Application, Beijing Power Machinery Institute,Beijing 100074,China
MA Hu1, Jia Li-xin2, HOU Shi-zhuo1, ZHANG Yi-ning3, LIU Shi-cheng1, GAO Hao-hong1. Initiation and Propagation Processes of Rotating Detonation Wave Based on Pre-Detonation Tube[J]. Journal of Propulsion Technology, 2021, 42(4): 826-833.
[1] Anand Vijay, Gutmark Ephraim. Rotating Detonations and Spinning Detonations: Similarities and Differences[J]. AIAA Journal, 2018, 56(5), 1717-1722.
[2] Braun J, Saracoglu B H, Magin T E, et al. One-Dimensional Analysis of the Magnetohydrodynamic Effect in Rotating Detonation Combustors[J]. AIAA Journal, 2016, 54(12): 3761-3767.
[3] Lu F K, Braun E M. Rotating Detonation Wave Propulsion: Experimental Challenges, Modeling, and Engine Concepts[J]. Journal of Propulsion and Power, 2014, 30(5): 1125-1142.
[4] Wolanski P. Detonative Propulsion[J]. Proceedings of the Combustion Institute, 2013, 34: 125-158.
[5] Xie Q F, Wen H C, Li W H, et al. Analysis of Operating Diagram for H2/Air Rotating Detonation Combustors under Lean Fuel Condition[J]. Energy, 2018, 151: 408-419.
[6] Bykovski F A, Zhdan S A. Current Status of Research of Continuous Detonation in Fuel-Air Mixtures[J]. Combution, Explosion and Shock Waves, 2015, 51(1): 21-35.
[7] Voitsekhovskii B V. Stationary Spin Detonation[J]. Soviet Journal of Applied Mechanics and Technical Physics, 1960, 3: 157-164.
[8] Nicholls J A, Cullen R E, Ragland K W. Feasibility Studies of a Rotating Detonation Wave Rocket Motor[J]. Journal of Spacecraft and Rockets, 1966, 3(6): 893-898.
[9] Bykovskii F A, Zhdan S A, Vedernikov E F. Continuous Spin Detonations[J]. Journal of Propulsion and Power, 2012, 22(6): 1204-1216.
[10] Falempin F, Naour B L, Miquel F. Recent Experimental Results Obtained on Continuous Detonation Wave Engine[R]. AIAA 2011-2235.
[11] Kindracki J, Wolański P, Gut Z. Experimental Research on the Rotating Detonation in Gaseous Fuels-Oxygen Mixtures[J]. Shock Waves, 2011, 21(2): 75-84.
[12] Peng L, Wang D, Wu X, et al. Ignition Experiment with Automotive Spark on Rotating Detonation Engine[J]. International Journal of Hydrogen Energy, 2015, 40(26): 8465-8474.
[13] Yang C, Wu X, Ma H, et al. Experimental Research on Initiation Characteristics of a Rotating Detonation Engine[J]. Experimental Thermal and Fluid Science, 2015, 71: 154-163.
[14] Robert D, Steven R, Andrew S G, et al. Shock-Initiated Combustion in an Airbreathing, Pulse Detonation Engine-Crossover System[J]. AIAA Journal, 2016, 54(3): 936-945.
[15] Robert D, William S, Andrew S G, et al. Shock Transfer and Shock-Initiated Detonation in a Dual Pulse Detonation Engine/Crossover System[J]. AIAA Journal, 2015, 53(1): 132-139.
[16] Russo R M. Operational Characteristics of a Rotating Detonation Engine Using Hydrogen and Air[D]. United States: Air University, 2011.
[17] George A S, Driscoll R, Anand V, et al. Starting Transients and Detonation Onset Behavior in a Rotating Detonation Combustor[R]. AIAA 2016-0126.
[18] Frolov S M, Aksenov V S, Ivanov V S, et al. Large-Scale Hydrogen-Air Continuous Detonation Combustor[J]. International Journal of Hydrogen Energy, 2015, 40(3): 1616-1623.
[19] Liu S J, Lin Z Y, Liu W D, et al. Experimental Realization of H2/Air Continuous Rotating Detonation in a Cylindrical Combustor[J]. Combustion Science and Technology, 2012, 184(9): 1302-1317.
[20] Miller S, King P, Schauer F, et al. Ignition Design for a Rotating Detonation Engine[R]. AIAA 2013-1174.