Követés
D Oancea, 2013
D Oancea, 2013
Professor Emeritus University of Bucharest, 2013
E-mail megerősítve itt: gw-chimie.math.unibuc.ro
Cím
Hivatkozott rá
Hivatkozott rá
Év
Inert gas influence on the laminar burning velocity of methane-air mixtures
M Mitu, V Giurcan, D Razus, D Oancea
Journal of hazardous materials 321, 440-448, 2017
1402017
Explosion pressures of hydrocarbon–air mixtures in closed vessels
D Razus, C Movileanu, V Brinzea, D Oancea
Journal of Hazardous Materials 135 (1-3), 58-65, 2006
1342006
Temperature and pressure influence on explosion pressures of closed vessel propane–air deflagrations
D Razus, V Brinzea, M Mitu, D Oancea
Journal of hazardous materials 174 (1-3), 548-555, 2010
1282010
Influence of inert gas addition on propagation indices of methane–air deflagrations
M Mitu, M Prodan, V Giurcan, D Razus, D Oancea
Process Safety and Environmental Protection 102, 513-522, 2016
1232016
The rate of pressure rise of gaseous propylene–air explosions in spherical and cylindrical enclosures
D Razus, C Movileanua, D Oancea
Journal of Hazardous Materials 139 (1), 1-8, 2007
1102007
Propagation indices of methane-air explosions in closed vessels
M Mitu, V Giurcan, D Razus, M Prodan, D Oancea
Journal of Loss Prevention in the Process Industries 47, 110-119, 2017
1032017
Temperature and pressure influence on maximum rates of pressure rise during explosions of propane–air mixtures in a spherical vessel
D Razus, V Brinzea, M Mitu, C Movileanu, D Oancea
Journal of hazardous materials 190 (1-3), 891-896, 2011
1022011
Explosion characteristics of LPG–air mixtures in closed vessels
D Razus, V Brinzea, M Mitu, D Oancea
Journal of Hazardous Materials 165 (1-3), 1248-1252, 2009
1012009
Experimental and computed burning velocities of propane–air mixtures
D Razus, D Oancea, V Brinzea, M Mitu, C Movileanu
Energy Conversion and Management 51 (12), 2979-2984, 2010
782010
Burning velocity evaluation from pressure evolution during the early stage of closed-vessel explosions
D Razus, D Oancea, C Movileanu
Journal of Loss Prevention in the Process Industries 19 (4), 334-342, 2006
732006
Normal burning velocity and propagation speed of ethane–air: Pressure and temperature dependence
M Mitu, D Razus, V Giurcan, D Oancea
Fuel 147, 27-34, 2015
632015
Temperature and pressure influence on ethane–air deflagration parameters in a spherical closed vessel
M Mitu, V Giurcan, D Razus, D Oancea
Energy & fuels 26 (8), 4840-4848, 2012
592012
Burning velocity of propane–air mixtures from pressure–time records during explosions in a closed spherical vessel
D Razus, V Brinzea, M Mitu, C Movileanu, D Oancea
Energy & fuels 26 (2), 901-909, 2012
562012
Burning Velocity of Liquefied Petroleum Gas (LPG)− air mixtures in the presence of exhaust gas
D Razus, V Brinzea, M Mitu, D Oancea
Energy & fuels 24 (3), 1487-1494, 2010
542010
Closed vessel combustion of propylene–air mixtures in the presence of exhaust gas
D Razus, C Movileanu, V Brinzea, D Oancea
Fuel 86 (12-13), 1865-1872, 2007
532007
Inerting effect of the combustion products on the confined deflagration of liquefied petroleum gas–air mixtures
D Razus, V Brinzea, M Mitu, C Movileanu, D Oancea
Journal of Loss Prevention in the process Industries 22 (4), 463-468, 2009
522009
Additive effects on the rate of pressure rise for ethylene–air deflagrations in closed vessels
C Movileanu, D Razus, D Oancea
Fuel 111, 194-200, 2013
502013
Prediction of flammability limits of fuel-air and fuel-air-inert mixtures from explosivity parameters in closed vessels
V Giurcan, D Razus, M Mitu, D Oancea
Journal of Loss Prevention in the Process Industries 34, 65-71, 2015
492015
Influence of initial pressure and vessel’s geometry on deflagration of stoichiometric methane–air mixture in small-scale closed vessels
M Mitu, V Giurcan, D Razus, D Oancea
Energy & fuels 34 (3), 3828-3835, 2020
472020
Experimental and numerical study of laminar burning velocity of ethane–air mixtures of variable initial composition, temperature and pressure
M Mitu, D Razus, V Giurcan, D Oancea
Energy & fuels 28 (3), 2179-2188, 2014
472014
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