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Original Articles

The Onset of Detonation Behind Shock Waves of Moderate Intensity in Gas Phase

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Pages 607-620 | Received 15 May 2013, Accepted 19 Nov 2013, Published online: 23 Apr 2014

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Xiaodong Cai, Jianhan Liang & Ralf Deiterding. (2016) Numerical Investigation on Detonation Control Using a Pulse Hot Jet in Supersonic Combustible Mixture. Combustion Science and Technology 188:10, pages 1674-1690.
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Articles from other publishers (5)

F. Veiga-López, Z.F. Weng, R. Mével & J. Melguizo-Gavilanes. (2023) Influence of low-temperature chemistry on steady detonations with curvature losses. Proceedings of the Combustion Institute 39:3, pages 2925-2933.
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M. C. Brown & E. L. Belmont. (2023) Effects of ozone addition and LTC progression on detonation of O$$_{3}$$-enhanced DME–O$$_{2}$$. Shock Waves 33:1, pages 21-37.
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Chengyang Huang, Yuan Wang, Ralf Deiterding, Dehai Yu & Zheng Chen. (2022) Numerical studies on weak and strong ignition induced by reflected shock and boundary layer interaction反射激波与边界层相互作用引起弱点火和强点火的数值研究. Acta Mechanica Sinica 38:2.
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C. Huang, C. Qi & Z. Chen. (2019) Non-uniform ignition behind a reflected shock and its influence on ignition delay measured in a shock tube. Shock Waves 29:7, pages 957-967.
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Nabiha Chaumeix. 2019. 31st International Symposium on Shock Waves 1. 31st International Symposium on Shock Waves 1 65 80 .

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