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kw.\*:("Deflagración")

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Some effects of axial temperature gradients in the wall of a detonator delay elementCLEMENTS, L; KING-HELE, J. A; JONES, A. F et al.Combustion science and technology. 1995, Vol 107, Num 4-6, pp 205-221, issn 0010-2202Article

The peculiar SN 2005hk : Do some type ia supernovae explode as deflagrations?PHILLIPS, M. M; WEIDONG LI; HAMUY, Mario et al.Publications of the Astronomical Society of the Pacific. 2007, Vol 119, Num 854, pp 360-387, issn 0004-6280, 28 p.Article

Plate velocities for asymmetric sandwichesHELD, M.Propellants, explosives, pyrotechnics. 1997, Vol 22, Num 4, pp 218-220, issn 0721-3115Article

Detonating failed deflagration model of thermonuclear supernovae. II. Comparison to observationsKASEN, Daniel; PLEWA, Tomasz.The Astrophysical journal. 2007, Vol 662, Num 1, pp 459-471, issn 0004-637X, 13 p., 1Article

Gas dynamic features of self ignition of non diluted fuel/air mixtures at high pressureBLUMENTHAL, R; FIEWEGER, K; KOMP, K. H et al.Combustion science and technology. 1996, Vol 113-14, pp 137-166, issn 0010-2202Conference Paper

Supernovae : des explosions énigmatiques = Supernovae : enigmatic explosionsHILLEBRANDT, W; JANKA, H.-Th; MÜLLER, E et al.Pour la science. 2005, Num 336, pp 54-61, issn 0153-4092, 8 p.Article

On the sensitivity of deflagrations in a chandrasekhar mass white dwarf to initial conditionsLIVNE, Eli; ASIDA, Shimon M; HÖFLICH, Peter et al.The Astrophysical journal. 2005, Vol 632, Num 1, pp 443-449, issn 0004-637X, 7 p., 1Article

Development of the geometric structure of the thermonuclear-deflagration front in type Ia supernovaePOPOV, M. V; USTYUGOV, S. D; CHECHETKIN, V. M et al.Astronomy reports. 2004, Vol 48, Num 11, pp 921-933, issn 1063-7729, 13 p.Article

Temperature and Pressure Influence on Ethane―Air Deflagration Parameters in a Spherical Closed VesselMITU, Maria; GIURCAN, Venera; RAZUS, Domnina et al.Energy & fuels. 2012, Vol 26, Num JULAOU, pp 4840-4848, issn 0887-0624, 9 p.Article

Detonating failed deflagration model of thermonuclear supernovae. I. Explosion dynamicsPLEWA, Tomasz.The Astrophysical journal. 2007, Vol 657, Num 2, pp 942-960, issn 0004-637X, 19 p., 1Article

The effect of mixing irregularities on mixed-region critical length for deflagration-to-detonation transitionMONTGOMERY, C. J; KHOKHLOV, A. M; ORAN, E. S et al.Combustion and flame. 1998, Vol 115, Num 1-2, pp 38-50, issn 0010-2180Article

A theory of deflagration-to-detonation transition in unconfined flamesKHOKHLOV, A. M; ORAN, E. S; WHEELER, J. C et al.Combustion and flame. 1997, Vol 108, Num 4, pp 503-517, issn 0010-2180Article

The influence of the vent area location on hydrogen-air mixture deflagration in large-scale vesselSHEBEKO, Yu. N; KOROLCHENKO, Ya. A; TRUNEV, A. V et al.Combustion science and technology. 1997, Vol 129, Num 1-6, pp 57-69, issn 0010-2202Article

Influence of porosity and two-phase flow on diffusional/thermal instability of a deflagrating energetic materialMARGOLIS, S. B; WILLIAMS, F. A.Combustion science and technology. 1995, Vol 106, Num 1-3, pp 41-68, issn 0010-2202Article

A model for structural response to hydrogen combustion loads in severe accidentsBREITUNG, W; REDLINGER, R.Nuclear technology. 1995, Vol 111, Num 3, pp 420-425, issn 0029-5450Article

A study of deflagration and detonation in multiphase hydrocarbon-air mixturesSMIRNOV, N. N; TYURNIKOV, M. V.Combustion and flame. 1994, Vol 96, Num 1-2, pp 130-140, issn 0010-2180Article

Weak deflagration solutions to the simplest combustion modelWANCHENG SHENG; DECHUN TAN.Journal of differential equations (Print). 1994, Vol 107, Num 2, pp 207-230, issn 0022-0396Article

Combustion hazards of silane and its chloridesBRITTON, L. G.Plant/operations progress. 1990, Vol 9, Num 1, pp 16-38, issn 0278-4513Article

A study on the scaling features for mixing and deflagration potential of stratified layer of hydrogen due to molecular diffusionAGRAWAL, Nilesh; VELUSAMY, K; DAS, Sarit K et al.International communications in heat and mass transfer. 2013, Vol 48, pp 28-33, issn 0735-1933, 6 p.Article

Flame evolution during type la supernovae and the deflagration phase in the gravitationally confined detonation scenarioTOWNSLEY, D. M; CALDER, A. C; ASIDA, S. M et al.The Astrophysical journal. 2007, Vol 668, Num 2, pp 1118-1131, issn 0004-637X, 14 p., 1Article

A model for multidimensional delayed detonations in SN la explosionsGOLOMBEK, I; NIEMEYER, J. C.Astronomy and astrophysics (Berlin. Print). 2005, Vol 438, Num 2, pp 611-616, issn 0004-6361, 6 p.Article

The fast-time stability of a simple deflagrationLOZINSKI, D; BUCKMASTER, J.Combustion science and technology. 1995, Vol 110/11, pp 379-392, issn 0010-2202, 13 p.Article

Comparative analysis of test work studying factors influencing pressures developed in vented deflagrationsDEGOOD, R; CHATRATHI, K.Journal of loss prevention in the process industries. 1991, Vol 4, Num 5, pp 297-304, issn 0950-4230Conference Paper

Analysis of thermal runaway in the ignition processDOLD, J. W.SIAM journal on applied mathematics (Print). 1989, Vol 49, Num 2, pp 459-480, issn 0036-1399, 22 p.Article

Burning Velocity of Propane―Air Mixtures from Pressure―Time Records during Explosions in a Closed Spherical VesselRAZUS, Domnina; BRINZEA, Venera; MITU, Maria et al.Energy & fuels. 2012, Vol 26, Num JANFEV, pp 901-909, issn 0887-0624, 9 p.Article

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