화학공학소재연구정보센터
검색결과 : 15건
No. Article
1 Investigation into pressure dependence of flame speed for fuels with low and high octane sensitivity through blending ethanol
Fan QH, Qi YL, Wang YD, Wang Z
Combustion and Flame, 212, 252, 2020
2 Effects of fuel composition and octane sensitivity on polycyclic aromatic hydrocarbon and soot emissions of gasoline-ethanol blend surrogates
Kalvakala KC, Pal P, Aggarwal SK
Combustion and Flame, 221, 476, 2020
3 RON and MON chemical kinetic modeling derived correlations with ignition delay time for gasoline and octane boosting additives
Corrubia JA, Capece JM, Cernansky NP, Miller DL, Durrett RP, Najt PM
Combustion and Flame, 219, 359, 2020
4 Insights into engine autoignition: Combining engine thermodynamic trajectory and fuel ignition delay iso-contour
Tao MY, Zhao P, Szybist JP, Lynch P, Ge HW
Combustion and Flame, 200, 207, 2019
5 Two-stage ignition behavior and octane sensitivity of toluene reference fuels as gasoline surrogate
Kim D, Westbrook CK, Violi A
Combustion and Flame, 210, 100, 2019
6 The influence of chemical composition on ignition delay times of gasoline fractions
Naser N, Jameel AGA, Emwas AH, Singh E, Chung SH, Sarathy SM
Combustion and Flame, 209, 418, 2019
7 Investigating auto-ignition behavior of n-heptane/iso-octane/ethanol mixtures for gasoline surrogates through rapid compression machine measurement and chemical kinetics analysis
Fan QH, Wang Z, Qi YL, Wang YD
Fuel, 241, 1095, 2019
8 Autoignition and select properties of low sample volume thermochemical mixtures from renewable sources
Olarte MV, Albrecht KO, Bays JT, Polikarpov E, Maddi B, Linehan JC, O'Hagan MJ, Gaspar DJ
Fuel, 238, 493, 2019
9 Impact of octane sensitivity and thermodynamic conditions on combustion process of spark-ignition to compression-ignition through an optical rapid compression machine
Fan QH, Qi YL, Wang Z
Fuel, 253, 864, 2019
10 Manifestation of octane rating, fuel sensitivity, and composition effects for gasoline surrogates under advanced compression ignition conditions
Tao MY, Zhao P, DelVescovo D, Ge HW
Combustion and Flame, 192, 238, 2018