1 |
Turbulence, evaporation and combustion interactions in n-heptane droplets under high pressure conditions using DNS Wang HO, Luo K, Hawkes ER, Chen JH, Fan JR Combustion and Flame, 225, 417, 2021 |
2 |
Effects of initial temperature on ignition and flame propagation of dual-fuel mixture in mixing layer Zhang XJ, Yuan CW, Zhou L, Zhao WH, Liu ZK, Wei HQ Combustion and Flame, 225, 468, 2021 |
3 |
A statistical model to predict ignition probability Esclapez L, Collin-Bastiani F, Riber E, Cuenot B Combustion and Flame, 225, 180, 2021 |
4 |
Speciation measurements in shock tubes for validation of complex chemical kinetics mechanisms: Application to 2-Methyl-2-Butene oxidation Alturaifi SA, Mulvihill CR, Mathieu O, Petersen EL, Mike J Combustion and Flame, 225, 196, 2021 |
5 |
A 2-D DNS study of the effects of nozzle geometry, ignition kernel placement and initial turbulence on prechamber ignition Benekos S, Frouzakis CE, Giannakopoulos GK, Altantzis C, Boulouchos K Combustion and Flame, 225, 272, 2021 |
6 |
Nuclear shell model for the ignition process of boron particle with binary surface oxide layer Liang DL, Shen DK, Zhong WD, Wang Y, Liu JZ Combustion and Flame, 225, 320, 2021 |
7 |
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 |
8 |
Dual-camera high-speed imaging of the ignition modes of ethanol, methanol and n-hexane in a shock tube Figueroa-Labastida M, Badra J, Farooq A Combustion and Flame, 224, 33, 2021 |
9 |
Reflected shock-initiated ignition probed via simultaneous lateral and endwall high-speed imaging with a transparent, cylindrical test-section Ninnemann E, Pryor O, Barak S, Neupane S, Loparo Z, Laich A, Vasu SS Combustion and Flame, 224, 43, 2021 |
10 |
Effect of discharge current boost on ignition and combustion under cross flow conditions Ye C, Li XS, Yu X, Zheng M, Xu M Combustion and Flame, 223, 1, 2021 |