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Original Articles

Effects of fuel reactivity and injection timing on diesel engine combustion and emissions

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References

  • Aggarwal, S.K. 1998. A review of spray ignition phenomenon: present status and future research. Progress in Energy and Combustion Science 24(6):565–600.
  • Aggarwal, S.K. and D.E. Longman. 2011. A computational study on the effects of pre-ignition processes on diesel engine combustion and emissions. Proceedings of ASME/JSME 8th Thermal Engineering Joint Conference. AJTEC 2011–44202
  • Alam, M., J. Song, V. Zello, and A. Boehman. 2004. Spray and combustion visualization of a direct-injection diesel engine operated with oxygenated fuel blends. International Journal of Engine Research 7:503–21.
  • Bayraktar, H. 2005. Experimental and theoretical investigation of using gasoline-ethanol blends in spark-ignition engines. Renewable Energy 30(11):1733–47.
  • Brijesh, P., A. Chowdhury, and S. Sreedhara. 2014. Simultaneous reduction of NOx and PM using ultra-cooled EGR and retarded injection timing in a diesel engine. International Journal of Green Energy 12(4):347–358.
  • Changwei, J. and W. Shuofeng. 2009. Effect of hydrogen addition on the idle performance of a spark ignited gasoline engine at stoichiometric condition. International Journal of Hydrogen Energy 34:3546–56.
  • CHEMKIN 10101, Reaction Design: San Diego. 2010.
  • Chiang, C.H., M.S. Raju, and W.A. Sirignano. 1992. Numerical analysis of a convecting, vaporizing fuel droplet with variable properties. International Journal of Heat and Mass Transfer 35:1307–24.
  • Christensen, M., A. Hultqvist, and B. Johansson. 1999. Demonstrating the multi-fuel capability of a homogeneous charge compression ignition engine with variable compression ratio. SAE Paper 1999-01-3679.
  • Davidson, D.F., B.M. Gauthier, and R.K. Hanson. 2005. Shock tube ignition measurements of iso-octane/air and toluene/air at high pressures’. Proceedings of the Combustion Institute 30:1175–82.
  • Dec, J.E. 2009. Advanced compression-ignition engines-understanding the in-cylinder processes. Proceedings of the Combustion Institute 32:2727–42.
  • Diwakar, R. and S. Singh. 2008. NOx and soot reduction in diesel engine premixed charge compression ignition combustion: a computational investigation. International Journal of Engine Research 9(3):195–214.
  • Dr. Valeri Golovichev’s Home Page: http://www.tfd.chalmers.se/~valeri/MECH.html.
  • Dumitrescu, C.E., H. Guo, V. Hosseini, W.S. Neill, W.L. Chippior, T. Connolly, Graham, L., and H. Li. 2011. The effect of iso-octane addition on combustion and emission characteristics of a HCCI engine fueled with n-heptane. Journal of Engineering for Gas Turbines and Power 133: 112801-7.
  • Fieweger, K., R. Bluementhal, and G. Adomeit. 1997. Self ignition of SI engine model fuels: A shock tube investigation at high pressure. Combustion and Flame 109:599–619.
  • Flynn, P.F., R.P. Durrett, G.L. Hunter, A.O. Loye, O.C. Akinyemi, J.E. Dec, and C.K. Westbrook. 1999. Diesel combustion: An integrated view combining laser diagnostics, chemical kinetics, and empirical validation. SAE Paper 1999-01-0509.
  • Gauthier, B.M., D.F. Davidson, and R.K. Hanson. 2004. Shock tube determination of ignition delay times in full-blend and surrogate fuel mixtures. Combustion and Flame 139:300–11.
  • Gray, A.W. and T.W. Ryan. 1997. Homogeneous charge compression ignition of diesel fuel. SAE Paper 1997–971676.
  • Higgins, B. and D.L. Siebers. 2001. Measurement of the flame lift-off location on DI diesel sprays using OH chemiluminescence. SAE Paper 2001-01-0918.
  • Hu, Z., R.F. Cracknell, and L.M.T. Somers. 2011. Computational study of fuel effects in premixed charge compression ignition (PCCI) engine combustion. Proceedings of European Combustion Meeting, 2011.
  • Irimescu, A. 2012. Performance and fuel conversion efficiency of a spark ignition engine fueled with iso-butanol. Applied Energy 96:477–483.
  • Jia, M. and M. Xie. 2006. A chemical kinetics model of iso-octane oxidation for HCCI engines. Fuel 85:2593–2604.
  • Kaahaaina, N.B., A.J. Simon, P.A. Caton, and C.F. Edwards. 2001. Use of dynamic valving to achieve residual-affected combustion. SAE Paper 2001–01-0549.
  • Kalghatgi, G.T., L. Hildingsson, A.J. Harrison, and B. Johansson. 2011. Autoignition quality of gasoline fuels in partially premixed combustion in diesel engines. Proceedings of the Combustion Institute 33:3015–3021.
  • Kalghatgi, G.T., P. Risberg, and H.E. Ångström. 2006. Advantages of fuels with high resistance to auto-ignition in late injection, low-temperature, compression ignition combustion. SAE Paper 2006-01-3385.
  • Karabektas, M. and M. Hosoz. 2009. Performance and emission characteristics of a diesel engine using isobutanol-diesel fuel blends. Renewable Energy 34(6):1554–1559.
  • Kimura, S., S.O. Aoki, Y. Kitahara, and E. Aiyoshizawa. 2001. Ultra-clean combustion technology combining a low-temperature and premixed combustion concept for meeting future emission standards. SAE Paper 2001-01-0200.
  • Kokjohn, S.L. and R.D. Reitz. 2009. A modeling study of charge preparation and combustion in an HCCI engine using a variable pressure pulse (VPP) injection system and optimized PRF blends. Proceedings of DEER Conference 2009.
  • Kong, S.C. and R.D. Reitz. 2002. Use of detailed chemical kinetics to study HCCI engine combustion with consideration of turbulent mixing effects. Journal of Engineering for Gas Turbines and Power 124(3):702–7.
  • Korakianitis, T., A.M. Namasivayam, and R.J. Crookes. 2011. Natural-gas fueled spark-ignition (SI) and compression-ignition (CI) engine performance and emissions. Progress in Energy and Combustion Science 37:89–112.
  • Lapuerta, M., O. Armas, and J. Rodríguez-Fernández. 2008. Effect of biodiesel fuels on diesel engine emissions. Progress in Energy and Combustion Science 34(2):198–223.
  • Lee, C.H. and K.H. Lee. 2007. An experimental study on the combustion and emission characteristics of a stratified charge compression ignition (SCCI) engine. Energy & Fuel 21:1901–7.
  • Liu, A.B., D.K. Mather, and R.D. Reitz. 1993. Modeling the effects of drop drag and breakup on fuel sprays. SAE Paper 1993–93007.
  • LLNL (2013) https://www-pls.llnl.gov/data/docs/science_and_technology/chemistry/combustion/ic8_ver3_mech.txt.
  • López, J.J., R. Novella, A. García, and J.F. Winklinger. 2013. Investigation of the ignition and combustion processes of a dual-fuel spray under diesel-like conditions using computational fluid dynamics (CFD) modeling. Mathematical and Computer Modeling 57:1897–906.
  • Lu, X.C., W. Chen, and Z. Huang. 2005. A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR Part 1. The basic characteristics of HCCI combustion. Fuel 84:1074–83.
  • Mueller, C.J., G.C. Martin, T.E. Briggs, and K.P. Duffy. 2004. An experimental investigation of in-cylinder processes under dual-injection conditions in a DI diesel engine. SAE Paper 2004-01-1843.
  • Ni, P. and X. Wang. 2012. Modeling the Formation of NOx and Soot Emissions in a Diesel Engine at Different Humidity. International Journal of Green Energy 9(8):815–28.
  • Patterson, M.A. and R.D. Reitz. 1998. Modeling the effects of fuel spray characteristics on diesel engine combustion and emission. SAE Paper 1998–980131.
  • Peng, Z., H. Zhao, and N. Ladommatos. 2003. Visualization of the homogeneous charge compression ignition/controlled autoignition combustion process using two-dimensional planar laser-induced fluorescence imaging of formaldehyde. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 217:1125–34.
  • Poster, S.L., and J. Abraham. 2002. Modeling collision and coalescence in diesel spray. International Journal of Multiphase Flow 28:997–1019.
  • Reitz, R.D. 2012. Directions in internal combustion engine research. Combustion and Flame 160:1–8.
  • Reitz, R.D. and R. Diwakar. 1987. Structure of high pressure sprays. SAE Trans 1987; 96:492–509.
  • Richards, K.J., P.K. Senecal, and E. Pomraning. 2012). CONVERGE (Version 1.4.1), Convergent Science, Inc., Middleton, WI.
  • Saravanan, N., G. Nagarajan, and S. Narayanasamy. 2008. An experimental investigation on DI diesel engine with hydrogen fuel. Renewable Energy 33(3):415–21.
  • Schmidt, D.P. and C.J. Rutland. 2000. A new droplet collision algorithm. Journal of Computational Physics 164:62–80.
  • Senecal, P.K., E. Pomraning, and K.J. Richards. 2003. Multi-dimensional modeling of direct-injection diesel spray liquid length and flame lift-off length using CFD and parallel detailed chemistry. SAE Paper. 2003-01-0243.
  • Shahbakhti, M. and C.R. Koch. 2008. Characterizing the cyclic variability of ignition timing in a homogeneous charge compression ignition engine fuelled with n-heptane/iso-octane blend fuels. International Journal of Engine Research 9:361–97.
  • Siebers, D.L. and B. Higgins. 2001. Flame lift-Off on direct-injection diesel sprays under quiescent conditions. SAE Paper 2001-01-0530.
  • Som, S. and S.K. Aggarwal. 2010. Effects of primary breakup modeling on spray and combustion characteristics of compression ignition engines. Combustion and Flame 157:1179–93.
  • Tanaka, S., F. Ayala, J.C. Keck, and J.B. Heywwod. 2003. Two-stage ignition in HCCI combustion and HCCI control by fuels and additives. Combustion and Flame 132(1-2):219–39.
  • Wang, D., C. Zhang, and Y. Wang. 2007. A Numerical Study of Multiple Fuel Injection Strategies for NOx Reduction from DI Diesel Engines. International Journal of Green Energy 4(4):453–70.

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