검색결과 : 15건
No. | Article |
---|---|
1 |
Autothermal reactor design for catalytic partial oxidations Balakotaiah V, Sun Z, West DH Chemical Engineering Journal, 374, 1403, 2019 |
2 |
Characterising pulverised fuel ignition in a visual drop tube furnace by use of a high-speed imaging technique Sarroza AC, Bennet TD, Eastwick C, Liu H Fuel Processing Technology, 157, 1, 2017 |
3 |
Dynamics of ignition of stoichiometric hydrogen-air mixtures by moving heated particles Melguizo-Gavilanes J, Coronel S, Mevel R, Shepherd JE International Journal of Hydrogen Energy, 42(11), 7380, 2017 |
4 |
Thermal radiation induced ignition of multipoint turbulent explosions Li T, Lindstedt RP Process Safety and Environmental Protection, 107, 108, 2017 |
5 |
An overview of coal rank influence on ignition and combustion phenomena at the particle level Khatami R, Levendis YA Combustion and Flame, 164, 22, 2016 |
6 |
Experimental and numerical study of heat transfer and oxidation reaction during ignition of diesel fuel by a hot particle Glushkov DO, Legros JC, Strizhak PA, Zakharevich AV Fuel, 175, 105, 2016 |
7 |
Effect of interface thermal resistance on ignition of reactive material by a hot particle Yang JL, Wang SP, Chen HX International Journal of Heat and Mass Transfer, 97, 146, 2016 |
8 |
ALUMINUM-METAL REACTIVE COMPOSITES Aly Y, Schoenitz M, Dreizin EL Combustion Science and Technology, 183(10), 1107, 2011 |
9 |
The effect of a shock wave on the ignition behavior of aluminum particles in a shock tube Schloffel G, Eichhorn A, Albers H, Mundt C, Seiler F, Zhang F Combustion and Flame, 157(3), 446, 2010 |
10 |
THE EFFECT OF PARTICLE SIZE AND AMBIENT OXIDIZER CONCENTRATION ON METAL PARTICLE IGNITION Meinkohn D Combustion Science and Technology, 181(8), 1007, 2009 |