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34 articles with title/keywords/abstract containing deflagration-to-detonation transition

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Experimental Investigations on Detonation Initiation in a Kerosene-Oxygen Pulse Detonation Rocket Engine

Authors: Li, Jianling; Fan, Wei; Yan, Chuanjun; Li, Qiang

Source: Combustion Science and Technology, Volume 181, Number 3, March 2009 , pp. 417-432(16)

Publisher: Taylor and Francis Ltd

Detonation initiation on the microsecond time scale: DDTs

Authors: Kassoy, D. R.; Kuehn, J. A.; Nabity, M. W.; Clarke, J. F.

Source: Combustion Theory and Modelling, Volume 12, Number 6, December 2008 , pp. 1009-1047(39)

Publisher: Taylor and Francis Ltd

Reduction of the deflagration-to-detonation transition distance and time in a tube with regular shaped obstacles

Authors: Frolov, S.; Semenov, I.; Komissarov, P.; Utkin, P.; Markov, V.

Source: Doklady Physical Chemistry, Volume 415, Number 2, August 2007 , pp. 209-213(5)

Publisher: MAIK Nauka/Interperiodica

Nonclassical regimes of wave diffraction in combustible mixtures

Authors: Vasil'ev, A.; Drozdov, M.; Khidirov, S.

Source: Combustion, Explosion, and Shock Waves, Volume 42, Number 6, November 2006 , pp. 746-752(7)

Publisher: Springer

Tube diameter effect on deflagration-to-detonation transition of propane-oxygen mixtures

Authors: Li, J.; Lai, W.; Chung, K.

Source: Shock Waves, Volume 16, Number 2, December 2006 , pp. 109-117(9)

Publisher: Springer

Detonation of propane-air mixtures under injection of hot detonation products

Authors: Tarzhanov, V.; Telichko, I.; Vil'danov, V.; Sdobnov, V.; Makarov, A.; Mukhin, S.; Koretskii, I.; Ogarkov, V.; Vlasov, V.; Zinchenko, A.; Vorob'ev, A.; Grachev, A.; Matkin, V.; Potashnikov, V.

Source: Combustion, Explosion, and Shock Waves, Volume 42, Number 3, May 2006 , pp. 336-345(10)

Publisher: Springer

Estimation of critical conditions for the detonation-to-deflagration transition

Author: Vasil'ev, A.

Source: Combustion, Explosion, and Shock Waves, Volume 42, Number 2, March 2006 , pp. 205-209(5)

Publisher: Springer

Crystal sensitivities of energetic materials

Authors: Walley, S.M.; Field, J.E.; Greenaway, M.W.

Source: Materials Science and Technology, Volume 22, Number 4, April 2006 , pp. 402-413(12)

Publisher: Maney Publishing

Inhibition of various Hydrogen combustion regimes in air by Propylene and Isopropanol

Authors: Azatyan V.; Borisov A.; Merzhanov A.; Kalachev V.; Masalova V.; Mailkov A.; Troshin K.

Source: Combustion, Explosion, and Shock Waves, Volume 41, Number 1, January 2005 , pp. 1-11(11)

Publisher: Springer

Effect of Channel Geometry and Mixture Temperature on Detonation-to-Deflagration Transition in Gases

Authors: Smirnov N.N.; Nikitin V.F.

Source: Combustion, Explosion, and Shock Waves, Volume 40, Number 2, March 2004 , pp. 186-199(14)

Publisher: Springer

Investigation of deflagrations and detonations in pipes and flame arresters by high-speed framing

Authors: Kersten C.; Forster H.

Source: Journal of Loss Prevention in the Process Industries, Volume 17, Number 1, January 2004 , pp. 43-50(8)

Publisher: Elsevier

The transition from deflagration to detonation in thin channels

Authors: Kagan L.; Sivashinsky G.

Source: Combustion and Flame, Volume 134, Number 4, September 2003 , pp. 389-397(9)

Publisher: Elsevier

HIGH-IRRADIANCE LASER IGNITION OF EXPLOSIVES

Authors: ALI A.N.; SON S.F.; ASAY B.W.; DECROIX M.E.; BREWSTER M.Q.

Source: Combustion Science and Technology, Volume 175, Number 8, August 2003 , pp. 1551-1571(21)

Publisher: Taylor and Francis Ltd

MODELING AND ANALYSIS OF REACTIVE COMPACTION FOR GRANULAR ENERGETIC SOLIDS

Author: GONTHIER K.A.

Source: Combustion Science and Technology, Volume 175, Number 9, September 2003 , pp. 1679-1709(31)

Publisher: Taylor and Francis Ltd

Use of Gas Detonation in a Controlled Frequency Mode (Review)

Authors: Bazhenova T.V.; Golub V.V.

Source: Combustion, Explosion, and Shock Waves, Volume 39, Number 4, July 2003 , pp. 365-381(17)

Publisher: Springer

Gas Detonation and its Application in Engineering and Technologies (Review)

Authors: Nikolaev Y.A.; Vasil'ev A.A.; Ul'yanitskii B.Y.

Source: Combustion, Explosion, and Shock Waves, Volume 39, Number 4, July 2003 , pp. 382-410(29)

Publisher: Springer

CFD simulations of turbulent reactive flows with supercomputing for hydrogen safety

Authors: Rehm W.; Nae C.; Jahn W.; Vogelsang R.; Wang B.L.

Source: Computer Physics Communications, Volume 147, Number 1, 1 August 2002 , pp. 522-525(4)

Publisher: Elsevier

Simulation of hydrogen deflagration and detonation in a BWR reactor building

Authors: Manninen M.; Silde A.; Lindholm I.; Huhtanen R.; Sjovall H.

Source: Nuclear Engineering and Design, Volume 211, Number 1, January 2002 , pp. 27-50(24)

Publisher: Elsevier

Experimental study of flame acceleration and the deflagration-to-detonation transition under conditions of transverse venting

Authors: Alekseev V.I.; Kuznetsov M.S.; Yankin Y.G.; Dorofeev S.B.

Source: Journal of Loss Prevention in the Process Industries, Volume 14, Number 6, November 2001 , pp. 591-596(6)

Publisher: Elsevier

The influence of shock bifurcations on shock-flame interactions and DDT

Authors: Gamezo V.N.; Khokhlov A.M.; Oran E.S.

Source: Combustion and Flame, Volume 126, Number 4, September 2001 , pp. 1810-1826(17)

Publisher: Elsevier

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