TY - JOUR
T1 - Combustion characteristics of landfill gas in constant volume combustion chamber for large displacement volume engine (II) - Combustion analysis - Combustion a
AU - Kwon, Soon Tae
AU - Park, Chanjun
AU - Ohm, Inyong
PY - 2013/8
Y1 - 2013/8
N2 - This is the second paper on the combustion characteristics of landfill gas in a constant volume combustion chamber for a large displacement volume commercial engine, and it discusses the combustion process on the basis of pressure measurements. The results show that the bimodal peak pressure phenomenon, which is caused by the interaction of the heat release and the heat transfer, is more apparent as the mixtures are more favorable to combustion, and the magnitudes of the pressures depend on the unburned fraction. In addition, there exist four main inflection points during heat release owing to variations in the heat transfer area related to flame propagation from the ignition point. Furthermore, the number of inflection points increases as the mixture quality worsens because of the extended burn duration. Consequently, the sophisticated interactions between the heat transfer area changing pattern due to flame propagation and transfer duration might cause very peculiar heat release patterns.
AB - This is the second paper on the combustion characteristics of landfill gas in a constant volume combustion chamber for a large displacement volume commercial engine, and it discusses the combustion process on the basis of pressure measurements. The results show that the bimodal peak pressure phenomenon, which is caused by the interaction of the heat release and the heat transfer, is more apparent as the mixtures are more favorable to combustion, and the magnitudes of the pressures depend on the unburned fraction. In addition, there exist four main inflection points during heat release owing to variations in the heat transfer area related to flame propagation from the ignition point. Furthermore, the number of inflection points increases as the mixture quality worsens because of the extended burn duration. Consequently, the sophisticated interactions between the heat transfer area changing pattern due to flame propagation and transfer duration might cause very peculiar heat release patterns.
KW - (Stoichiometric Ratio)
KW - Burn Duration
KW - Constant Volume Combustion Chamber
KW - Hear Release Rate
KW - Landfill Gas
KW - Methane
UR - http://www.scopus.com/inward/record.url?scp=84898447008&partnerID=8YFLogxK
U2 - 10.3795/KSME-B.2013.37.8.743
DO - 10.3795/KSME-B.2013.37.8.743
M3 - Article
AN - SCOPUS:84898447008
SN - 1226-4881
VL - 37
SP - 743
EP - 752
JO - Transactions of the Korean Society of Mechanical Engineers, B
JF - Transactions of the Korean Society of Mechanical Engineers, B
IS - 8
ER -