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Numerical study on transition of hydrogen/air flame triggered by auto-ignition under effect of pressure wave in an enclosed space Wei HQ, Shang YB, Cai JL, Pan MZ, Shu GQ, Chen R International Journal of Hydrogen Energy, 42(26), 16877, 2017 |
2 |
Reciprocal transitions between buoyant diffusion flame and fire whirl Lei J, Liu NA Combustion and Flame, 167, 463, 2016 |
3 |
STRUCTURE AND PROPAGATION OF PREMIXED FLAMES IN A CLOSED COMBUSTION CHAMBER WITH MULTIPLE IGNITION SOURCES Hariharan A, Wichman IS Combustion Science and Technology, 187(10), 1562, 2015 |
4 |
PREMIXED FLAME PROPAGATION AND MORPHOLOGY IN A CONSTANT VOLUME COMBUSTION CHAMBER Hariharan A, Wichman IS Combustion Science and Technology, 186(8), 1025, 2014 |
5 |
Simulation of transient convective burning of an n-octane droplet using a four-step reduced mechanism Wu G, Sirignano WA, Williams FA Combustion and Flame, 158(6), 1171, 2011 |
6 |
Transient convective burning of interactive fuel droplets in double-layer arrays Wu G, Sirignano WA Combustion and Flame, 158(12), 2395, 2011 |
7 |
Transient burning of a convective fuel droplet Wu G, Sirignano WA Combustion and Flame, 157(5), 970, 2010 |
8 |
Effects of buoyancy on transitional hydrogen gas-jet diffusion flames Agrawal AK, Albers BW, Alammar KN Combustion Science and Technology, 177(2), 305, 2005 |
9 |
Laminar diffusion flames in a multiport burner Ko YC, Hou SS, Lin TH Combustion Science and Technology, 177(8), 1463, 2005 |
10 |
Circular-Dichroism Spectroscopy by 4-Wave-Mixing Using Polarization Grating-Induced Thermal Gratings Nunes JA, Tong WG, Chandler DW, Rahn LA Journal of Physical Chemistry A, 101(18), 3279, 1997 |