TY - JOUR
T1 - Backfire control and power enhancement of a hydrogen internal combustion engine
AU - Duan, Junfa
AU - Liu, Fushui
AU - Sun, Baigang
PY - 2014/3/18
Y1 - 2014/3/18
N2 - Frequent backfire can occur in inlet port fuel injection hydrogen internal combustion engines (HICEs) when the equivalence fuel-air ratio is larger than 0.56, thus limiting further enhancement of engine power. Thus, to control backfire, an inlet port fuel injection HICE test system and a computational fluid dynamics model are established to explore the factors that cause backfire under high loads. The temperature and the concentration of the gas mixture near the intake valves are among the essential factors that result in backfire. Optimizing the timing and pressure of hydrogen injection reduces the concentration distribution of the intake mixture and the temperature of the high-concentration mixture through the inlet valve, thus allowing control of backfire. Controlling backfire enables a HICE to work normally at high equivalence fuel-air ratio (even beyond 1.0). A HICE with optimized hydrogen injection timing and pressure demonstrates significant enhancement of the power output.
AB - Frequent backfire can occur in inlet port fuel injection hydrogen internal combustion engines (HICEs) when the equivalence fuel-air ratio is larger than 0.56, thus limiting further enhancement of engine power. Thus, to control backfire, an inlet port fuel injection HICE test system and a computational fluid dynamics model are established to explore the factors that cause backfire under high loads. The temperature and the concentration of the gas mixture near the intake valves are among the essential factors that result in backfire. Optimizing the timing and pressure of hydrogen injection reduces the concentration distribution of the intake mixture and the temperature of the high-concentration mixture through the inlet valve, thus allowing control of backfire. Controlling backfire enables a HICE to work normally at high equivalence fuel-air ratio (even beyond 1.0). A HICE with optimized hydrogen injection timing and pressure demonstrates significant enhancement of the power output.
KW - Backfire control
KW - Concentration distribution
KW - Hydrogen internal combustion engine
KW - Injection timing and pressure
KW - Power enhancement
KW - Temperature distribution
UR - http://www.scopus.com/inward/record.url?scp=84895475495&partnerID=8YFLogxK
U2 - 10.1016/j.ijhydene.2013.12.175
DO - 10.1016/j.ijhydene.2013.12.175
M3 - Article
AN - SCOPUS:84895475495
SN - 0360-3199
VL - 39
SP - 4581
EP - 4589
JO - International Journal of Hydrogen Energy
JF - International Journal of Hydrogen Energy
IS - 9
ER -