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R. Zhou, J.-P. Wang, “Numerical investigation of shock wave reflections near the head ends of rotating detonation engines”, Shock Waves, 23:5 (2013), 461
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Piotr Wolański, “Detonative propulsion”, Proceedings of the Combustion Institute, 34:1 (2013), 125
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Quan Zheng, Chun-sheng Weng, Qiao-dong Bai, “Experimental Research on the Propagation Process of Continuous Rotating Detonation Wave”, Defence Technology, 9:4 (2013), 201
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Shi-Jie Liu, Zhi-Yong Lin, Wei-Dong Liu, Wei Lin, Feng-Chen Zhuang, “Experimental Realization of H2/Air Continuous Rotating Detonation in a Cylindrical Combustor”, Combustion Science and Technology, 184:9 (2012), 1302
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Xu-Dong Zhang, Bao-Chun Fan, Ming-Yue Gui, Zhen-Hua Pan, Gang Dong, “Numerical study on three-dimensional flow field of continuously rotating detonation in a toroidal chamber”, Acta Mech Sin, 28:1 (2012), 66
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Yohann Eude, Dmitry Davidenko, Francois Falempin, Iskender Gökalp, 17th AIAA International Space Planes and Hypersonic Systems and Technologies Conference, 2011
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Frank Lu, Eric Braun, Luca Massa, Donald Wilson, 47th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 2011
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J. Kindracki, P. Wolański, Z. Gut, “Experimental research on the rotating detonation in gaseous fuels–oxygen mixtures”, Shock Waves, 21:2 (2011), 75
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Tae-Hyeong Yi, Jing Lou, Cary Turangan, Jeong-Yeol Choi, Piotr Wolanski, “Propulsive Performance of a Continuously Rotating Detonation Engine”, Journal of Propulsion and Power, 27:1 (2011), 171
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Dmitry Davidenko, Yohann Eude, Iskender Gokalp, Francois Falempin, 17th AIAA International Space Planes and Hypersonic Systems and Technologies Conference, 2011
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F. A. Bykovskii, S. A. Zhdan, E. F. Vedernikov, Yu. A. Zholobov, “Detonation of a coal-air mixture with addition of hydrogen in plane-radial vortex chambers”, Combustion, Explosion and Shock Waves, 47:4 (2011), 473–482
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Eric Braun, Nathan Dunn, Frank Lu, 48th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition, 2010
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F. A. Bykovskii, S. A. Zhdan, E. F. Vedernikov, “Realization and modeling of continuous spin detonation of a hydrogen-oxygen mixture in flow-type combustors. 1. Combustors of cylindrical annular geometry”, Combustion, Explosion and Shock Waves, 45:5 (2009), 606–617
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F. A. Bykovskii, E. F. Vedernikov, “Continuous spin detonation of hydrogen-oxygen mixtures. 3. Methods of measuring flow parameters and flow structure in combustors of different geometries”, Combustion, Explosion and Shock Waves, 44:4 (2008), 451–460
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F. A. Bykovskii, S. A. Zhdan, E. F. Vedernikov, “Continuous spin detonation of hydrogen-oxygen mixtures. 2. Combustor with an expanding annular channel”, Combustion, Explosion and Shock Waves, 44:3 (2008), 330–342