1 |
Flame speed and particle image velocimetry measurements of laminar burning velocities and Markstein numbers of some hydrocarbons Bradley D, Lawes M, Morsy ME Fuel, 243, 423, 2019 |
2 |
Explosion bomb measurements of ethanol-air laminar gaseous flame characteristics at pressures up to 1.4 MPa Bradley D, Lawes M, Mansour MS Combustion and Flame, 156(7), 1462, 2009 |
3 |
Flame/stretch interactions in laminar and turbulent premixed flames Aung KT, Hassan MI, Kwon S, Tseng LK, Kwon OC, Faeth GM Combustion Science and Technology, 174(1), 61, 2002 |
4 |
Prediction of vapour cloud explosions using the SCOPE model Puttock JS, Yardley MR, Cresswell TM Journal of Loss Prevention in The Process Industries, 13(3), 419, 2000 |
5 |
An evaluation of combined flame surface density and mixture fraction models for nonisenthalpic premixed turbulent flames Prasad ROS, Paul RN, Sivathanu YR, Gore JP Combustion and Flame, 117(3), 514, 1999 |
6 |
Correlations for the laminar-burning velocity of methane/diluent/air mixtures obtained in free-fall experiments Stone R, Clarke A, Beckwith P Combustion and Flame, 114(3-4), 546, 1998 |
7 |
Measured and predicted properties of laminar premixed methane/air flames at various pressures Hassan MI, Aung KT, Faeth GM Combustion and Flame, 115(4), 539, 1998 |
8 |
Turbulence measurements and observations of turbulent premixed flames at elevated pressures up to 3.0 MPa Kobayashi H, Nakashima T, Tamura T, Maruta K, Niioka T Combustion and Flame, 108(1-2), 104, 1997 |
9 |
Flame stretch interactions of laminar premixed hydrogen/air flames at normal temperature and pressure Aung KT, Hassan MI, Faeth GM Combustion and Flame, 109(1-2), 1, 1997 |
10 |
Flame front curvature distributions in a turbulent premixed flame zone Ashurst WT, Shepherd IG Combustion Science and Technology, 124(1-6), 115, 1997 |