1 |
Numerical investigation of radiative heat transfer in internal combustion engines Yue ZY, Reitz RD Applied Energy, 235, 147, 2019 |
2 |
Application of an Equilibrium-Phase Spray Model to Multicomponent Gasoline Direct Injection Yue ZY, Reitz RD Energy & Fuels, 33(4), 3565, 2019 |
3 |
Understanding the role of soot oxidation in gasoline combustion: A numerical study on the effects of oxygen enrichment on particulate mass and number emissions in a spark-ignition engine Distaso E, Amirante R, Tamburrano P, Reitz RD Energy Conversion and Management, 184, 24, 2019 |
4 |
Fast approximations of exponential and logarithm functions combined with efficient storage/retrieval for combustion kinetics calculations Perini F, Reitz RD Combustion and Flame, 194, 37, 2018 |
5 |
Comprehensive analysis of exergy destruction sources in different engine combustion regimes Li YP, Jia M, Kokjohn SL, Chang YC, Reitz RD Energy, 149, 697, 2018 |
6 |
A numerical study of the effects of using hydrogen, reformer gas and nitrogen on combustion, emissions and load limits of a heavy duty natural gas/diesel RCCI engine Rahnama P, Paykani A, Reitz RD Applied Energy, 193, 182, 2017 |
7 |
The effect of oxygenated fuel properties on diesel spray combustion and soot formation Park W, Park S, Reitz RD, Kurtz E Combustion and Flame, 180, 276, 2017 |
8 |
Effects of natural gas composition on performance and regulated, greenhouse gas and particulate emissions in spark-ignition engines Amirante R, Distaso E, Di Iorio S, Sementa P, Tamburrano P, Vaglieco BM, Reitz RD Energy Conversion and Management, 143, 338, 2017 |
9 |
A numerical study of the effects of reformer gas composition on the combustion and emission characteristics of a natural gas/diesel RCCI engine enriched with reformer gas Rahnama P, Paykani A, Bordbar V, Reitz RD Fuel, 209, 742, 2017 |
10 |
Knocking combustion in spark-ignition engines Wang Z, Liu H, Reitz RD Progress in Energy and Combustion Science, 61, 78, 2017 |