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Effect of hydrogen addition on NOx formation in high-pressure counter-flow premixed CH4/air flames de Persis S, Idir M, Molet J, Pillier L International Journal of Hydrogen Energy, 44(41), 23484, 2019 |
2 |
Experimental study and modelling of NOx formation in high pressure counter-flow premixed CH4/air flames Pillier L, Idir M, Molet J, Matynia A, de Persis S Fuel, 150, 394, 2015 |
3 |
Detailed mass spectrometric and modeling study of isomeric butene flames Schenk M, Leon L, Moshammer K, Osswald P, Zeuch T, Seidel L, Mauss F, Kohse-Hoinghaus K Combustion and Flame, 160(3), 487, 2013 |
4 |
Simulations of transient n-heptane and n-dodecane spray flames under Cross engine-relevant conditions using a transported PDF method Bhattacharjee S, Haworth DC Combustion and Flame, 160(10), 2083, 2013 |
5 |
Analysis of high pressure premixed flames using Equivalent Reactor Networks for predicting NOx emissions Lyra S, Cant RS Fuel, 107, 261, 2013 |
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Investigation of NCN and prompt-NO formation in low-pressure C1-C4 alkane flames Sutton JA, Williams BA, Fleming JW Combustion and Flame, 159(2), 562, 2012 |
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Pressure dependence of NO formation in laminar fuel-rich premixed CH4/air flames van Essen VM, Sepman AV, Mokhov AV, Levinsky HB Combustion and Flame, 153(3), 434, 2008 |
8 |
Characterization of the effects of hydrogen addition in premixed methane/air flames Halter F, Chauveau C, Gokalp I International Journal of Hydrogen Energy, 32(13), 2585, 2007 |
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Substantiating a fractal-based algebraic reaction closure of premixed turbulent combustion for high pressure and the Lewis number effects Aluri NK, Muppala SPR, Dinkelacker F Combustion and Flame, 145(4), 663, 2006 |
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Propagation, structure, and limit phenomena of laminar flames at elevated pressures Law CK Combustion Science and Technology, 178(1-3), 335, 2006 |