1 |
Laminar burning velocities of methane plus formic acid plus air flames: Experimental and modeling study Lavadera ML, Konnov AA Combustion and Flame, 225, 65, 2021 |
2 |
Two ignition transition modes at small and large distances between electrodes of a lean primary reference automobile fuel/air mixture at 373 K with Lewis number >> 1 Shy S, Liao YC, Chen YR, Huang SY Combustion and Flame, 225, 340, 2021 |
3 |
Experimental and kinetic modeling study of NO formation in premixed CH4+O-2+N-2 flames Han XL, Lavadera ML, Brackmann C, Wang ZH, He Y, Konnov AA Combustion and Flame, 223, 349, 2021 |
4 |
Determining the laminar burning velocity of nitrogen diluted dimethoxymethane (OME1) using the heat-flux burner method: Numerical and experimental investigations Eckart S, Fritsche C, Krasselt C, Krause H International Journal of Energy Research, 45(2), 2824, 2021 |
5 |
Effect of coal particle density on coal properties and combustion characteristics Behera D, Nandi BK Powder Technology, 382, 594, 2021 |
6 |
Experimental investigation of small-scale CS2 (carbon disulphide) pool fires Mishra S, Vishwakarma PK, Sharma A, Mishra KB Process Safety and Environmental Protection, 145, 203, 2021 |
7 |
Suppression of hydrogen-air explosions by hydrofluorocarbons Gao MD, Bi MS, Ye LL, Li YC, Jiang HP, Yang MR, Yan CC, Gao W Process Safety and Environmental Protection, 145, 378, 2021 |
8 |
Thermal Decomposition of Ammonium Perchlorate in the Presence of Copper Tungsten Oxide (CuWO4) Jain S, Varma VK, Mahajan AK, Khire VH, Kandasubramanian B Propellants Explosives Pyrotechnics, 46(5), 758, 2021 |
9 |
Influence of Particle Size and Temperature on the Burning Rate of Small Caliber Ball Powder Ritter JJ, Petre CF, Beland P, Nicole C Propellants Explosives Pyrotechnics, 46(5), 791, 2021 |
10 |
Linear Burning Rate and Erosivity Properties of Nitrocellulose Propellant Formulations Plasticized by Glycidyl Azide Polymer and Nitroglycerine Comtois E, Favis BD, Dubois C Propellants Explosives Pyrotechnics, 46(3), 494, 2021 |