화학공학소재연구정보센터
검색결과 : 10건
No. Article
1 Sooting limits of non-premixed counterflow ethylene/oxygen/inert flames using LII: Effects of flow strain rate and pressure (up to 30 atm)
Sarnacki BG, Chelliah HK
Combustion and Flame, 195, 267, 2018
2 Fuel pyrolysis in a microflow tube reactor-Measurement and modeling uncertainties of ethane, n-butane, and n-dodecane pyrolysis
Shrestha U, Rahimi MJ, Simms GP, Chelliah HK
Combustion and Flame, 177, 10, 2017
3 ON THE AXISYMMETRIC COUNTERFLOW FLAME SIMULATIONS: IS THERE AN OPTIMAL NOZZLE DIAMETER AND SEPARATION DISTANCE TO APPLY QUASI ONE-DIMENSIONAL THEORY?
Johnson RF, VanDine AC, Esposito GL, Chelliah HK
Combustion Science and Technology, 187(1-2), 37, 2014
4 Stirred reactor calculations to understand unwanted combustion enhancement by potential halon replacements
Linteris GT, Burgess DR, Takahashi F, Katta VR, Chelliah HK, Meier O
Combustion and Flame, 159(3), 1016, 2012
5 Extinction limits and associated uncertainties of nonpremixed counterflow flames of methane, ethylene, propylene and n-butane in air
Sarnacki BG, Esposito G, Krauss RH, Chelliah HK
Combustion and Flame, 159(3), 1026, 2012
6 Effect of binary diffusion and chemical kinetic parameter uncertainties in simulations of premixed and non-premixed laminar hydrogen flames
Esposito G, Chelliah HK
Combustion and Flame, 159(12), 3522, 2012
7 Skeletal reaction models based on principal component analysis: Application to ethylene-air ignition, propagation, and extinction phenomena
Esposito G, Chelliah HK
Combustion and Flame, 158(3), 477, 2011
8 Explicit reduced reaction models for ignition, flame propagation, and extinction of C2H4/CH4/H-2 and air systems
Zambon AC, Chelliah HK
Combustion and Flame, 150(1-2), 71, 2007
9 Effect of sodium bicarbonate particle size on the extinction condition of non-premixed counterflow flames
Chelliah HK, Wanigarathne PC, Lentati AM, Krauss RH, Fallon GS
Combustion and Flame, 134(3), 261, 2003
10 Dynamics of water droplets in a counterflow field and their effect on flame extinction
Lentati AM, Chelliah HK
Combustion and Flame, 115(1-2), 158, 1998