Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 12
Page No. 4286 - 4299

CFD Modeling and Experimental Validation of Different Piston Crown Designs in an HCCI Engine Fuelled with ISO-Octane

Authors : Hassan A. Aljaberi, Nuraini Abdul Aziz and A. Aziz Hairuddin

References

Arahanth and S.B. Kartika, 2016. Numerical simulation of multi-chamber piston C. I engine. IOSR. J. Mech. Civil Eng., 1: 58-65.
Direct Link  |  

Benajes, J., S. Molina, A. Garcia and J. Monsalve-Serrano, 2015. Effects of direct injection timing and blending ratio on RCCI combustion with different low reactivity fuels. Energy Convers. Manage., 99: 193-209.
Direct Link  |  

Canakci, M., 2012. Combustion characteristics of a DI-HCCI gasoline engine running at different boost pressures. Fuel, 96: 546-555.
Direct Link  |  

Cao, L., H. Zhao and X. Jiang, 2007. Analysis of controlled auto-ignition/HCCI combustion in a direct injection gasoline engine with single and split fuel injections. Combust. Sci. Technol., 180: 176-205.
Direct Link  |  

Catapano, F., P. Sementa and B.M. Vaglieco, 2016. Air-fuel mixing and combustion behavior of gasoline-ethanol blends in a GDI wall-guided turbocharged multi-cylinder optical engine. Renewable Energy, 96: 319-332.
Direct Link  |  

Caton, J.A., 2015. An Introduction to Thermodynamic Cycle Simulations for Internal Combustion Engines. John Wiley & Sons, Hoboken, New Jersey, ISBN:978-111-9037569, Pages: 366.

Contino, F., F. Foucher, P. Dagaut, T. Lucchini and G. D’Errico et al., 2013. Experimental and numerical analysis of nitric oxide effect on the ignition of iso-octane in a single cylinder HCCI engine. Combust. Flame, 160: 1476-1483.
Direct Link  |  

Coskun, G., H.S. Soyhan, U. Demir, A. Turkcan and A.N. Ozsezen et al., 2014. Influences of second injection variations on combustion and emissions of an HCCI-DI engine: Experiments and CFD modelling. Fuel, 136: 287-294.
Direct Link  |  

Das, P., P.M.V. Subbarao and J.P. Subrahmanyam, 2015. Effect of main injection timing for controlling the combustion phasing of a homogeneous charge compression ignition engine using a new dual injection strategy. Energy Convers. Manage., 95: 248-258.
Direct Link  |  

Gafoor, C.A. and R. Gupta, 2015. Numerical investigation of piston bowl geometry and swirl ratio on emission from diesel engines. Energy Convers. Manage., 101: 541-551.
Direct Link  |  

Genzale, C. and D. Wickman, 2006. An advanced optimization methodology for understanding the effects of piston bowl design in low-temperature diesel combustion. Proceedings of the THIESEL 2006 Conference on Thermo and Fluid Dynamic Processes in Diesel Engines, September 13-15, 2006, Polytechnic University of Valencia, Valencia, Spain, pp: 1-7.

Ghorbanpour, M. and R. Rasekhi, 2013. A parametric investigation of HCCI combustion to reduce emissions and improve efficiency using a CFD model approach. Fuel, 106: 157-165.
Direct Link  |  

Gugulothu, K.S. and K.H.C. Reddy, 2015. Effect of injection timing and split injection on different piston bowl configuration in a DI diesel engine. Procedia Eng., 127: 924-931.
Direct Link  |  

Hairuddin, A.A., T. Yusaf and A.P. Wandel, 2014. A review of hydrogen and natural gas addition in diesel HCCI engines. Renewable Sustainable Energy Rev., 32: 739-761.
Direct Link  |  

Harshavardhan, B. and J.M. Mallikarjuna, 2015. Effect of piston shape on in-cylinder flows and air fuel interaction in a direct injection spark ignition engine a CFD analysis. Energy, 81: 361-372.
Direct Link  |  

Heywood, J.B., 1988. Internal Combustion Engine Fundamentals. McGraw-Hill Inc., New York, ISBN-13: 9780070286375, Pages: 930.

Hunicz, J. and P. Kordos, 2011. An experimental study of fuel injection strategies in CAI gasoline engine. Exp. Therm. Fluid Sci., 35: 243-252.
Direct Link  |  

Hunicz, J., 2014. An experimental study of negative valve overlap injection effects and their impact on combustion in a gasoline HCCI engine. Fuel, 117: 236-250.
Direct Link  |  

Hunicz, J., M.S. Geca, P. Kordos and H. Komsta, 2015. An experimental study on a boosted gasoline HCCI engine under different direct fuel injection strategies. Exp. Therm. Fluid Sci., 62: 151-163.
Direct Link  |  

Indrodia, A.M., N.J. Chotai and B.M. Ramani, 2014. Investigation of different combustion chamber geometry of diesel engine using CFD modelling of in cylinder flow for improving the performance of engine. Proceedings of the 5th and 26th International Conference on All India Manufacturing Technology, Design and Research (AIMTDR), December 12-14, 2014, Indian Institute of Technology Guwahati, Guwahati, India, pp: 1-6.

Jia, M. and M.Z. Xie, 2006. A chemical kinetics model of iso-octane oxidation for HCCI engine. Fuel, 85: 2593-2604.
Direct Link  |  

Kakaee, A.H., A. Nasiri-Toosi, B. Partovi and A. Paykani, 2016. Effects of piston bowl geometry on combustion and emissions characteristics of a natural gas/diesel RCCI engine. Appl. Therm. Eng., 102: 1462-1472.
Direct Link  |  

Khaliq, A., F. Khalid, P.B. Sharma and I. Dincer, 2014. Energetic and exergetic analyses of a hydrogen-fuelled HCCI engine for environmentally benign operation. Intl. J. Sustainable Energy, 33: 367-385.
Direct Link  |  

Li, J., W.M. Yang, H. An, A. Maghbouli and S.K. Chou, 2014. Effects of piston bowl geometry on combustion and emission characteristics of biodiesel fueled diesel engines. Fuel, 120: 66-73.
Direct Link  |  

Li, N., H. Xie, T. Chen, L. Li and H. Zhao, 2013. The effects of intake backflow on in-cylinder situation and auto ignition in a gasoline controlled auto ignition engine. Appl. Energy, 101: 756-764.
Direct Link  |  

Liu, A.B., D. Mather and R.D. Reitz, 1993. Modeling the effects of drop drag and breakup on fuel sprays. Master Thesis, Engine Research Center, University of Wisconsin-Madison, Madison, Wisconsin.

Najafabadi, M.I., N.A. Aziz, N.M. Adam and A.M. Leman, 2013. Effects of intake temperature and equivalence ratio on HCCI ignition timing and emissions of a 2-stroke engine. Appl. Mech. Mater., 315: 498-502.
Direct Link  |  

Neshat, E. and R.K. Saray, 2014. Development of a new multi zone model for prediction of HCCI (Homogenous Charge Compression Ignition) engine combustion, performance and emission characteristics. Energy, 73: 325-339.
Direct Link  |  

O'Rourke, P.J. and A.A. Amsden, 1987. The TAB method for numerical calculation of spray droplet breakup. SAE International, Troy, Michigan.

Raj, A.R.G.S., J.M. Mallikarjuna and V. Ganesan, 2013. Energy efficient piston configuration for effective air motion a CFD study. Appl. Energy, 102: 347-354.
Direct Link  |  

Reitz, R., 1987. Modeling atomization processes in high-pressure vaporizing sprays. Atomisation Spray Technol., 3: 309-337.

Rezaei, S.Z., F. Zhang, H. Xu, A. Ghafourian and J.M. Herreros et al., 2013. Investigation of two-stage split-injection strategies for a dieseline fuelled PPCI engine. Fuel, 107: 299-308.
Direct Link  |  

Roychowdhury, D.G., S.K. Das and T. Sundararajan, 2002. Numerical simulation of natural convective heat transfer and fluid flow around a heated cylinder inside an enclosure. Heat Mass Transfer, 38: 565-576.
Direct Link  |  

Sharma, T.K., G.A.P. Rao and K.M. Murthy, 2016. Homogeneous Charge Compression Ignition (HCCI) engines: A review. Arch. Comput. Methods Eng., 23: 623-657.
Direct Link  |  

Shaver, G.M., J.C. Gerdes and M.J. Roelle, 2009. Physics-based modeling and control of residual-affected HCCI engines. J. Dyn. Syst. Meas. Control, 131: 1-12.
CrossRef  |  Direct Link  |  

Tanner, F.X., 1997. Liquid jet atomization and droplet breakup modeling of non-evaporating diesel fuel sprays. SAE. Tech. Pap., 106: 127-140.
Direct Link  |  

Tutak, W. and A. Jamrozik, 2016. Validation and optimization of the thermal cycle for a diesel engine by computational fluid dynamics modeling. Appl. Math. Modell., 40: 6293-6309.
Direct Link  |  

Wang, X., H. Zhao and H. Xie, 2015. Effect of piston shapes and fuel injection strategies on stoichiometric Stratified Flame Ignition (SFI) hybrid combustion in a PFI/DI gasoline engine by numerical simulations. Energy Convers. Manage., 98: 387-400.
Direct Link  |  

Wendy, H.K., S. Kamaruzzaman, M.N. Zulkifli and S. Azhari, 2008. CFD investigation of fluid flow and turbulence field characteristics in a four-stroke automotive direct injection engine. J. Inst. Eng. Malaysia, 69: 1-12.
Direct Link  |  

Wu, C., K. Deng and Z. Wang, 2016. The effect of combustion chamber shape on cylinder flow and lean combustion process in a large bore spark-ignition CNG engine. J. Energy Inst., 89: 240-247.
Direct Link  |  

Zhang, J., Z. Li, K. Zhang, L. Zhu and Z. Huang, 2014. An experiment study of homogeneous charge compression ignition combustion and emission in a gasoline engine. Therm. Sci., 18: 295-306.
Direct Link  |  

Zheng, Z., C. Liu, X. Tiam and X. Zhang, 2015. Numerical study of the effect of piston top contour on GDI engine performance under catalyst heating mode. Fuel, 157: 64-72.
Direct Link  |  

Zheng, Z., X. Tian and X. Zhang, 2015. Effects of split injection proportion and the second injection time on the mixture formation in a GDI engine under catalyst heating mode using stratified charge strategy. Appl. Therm. Eng., 84: 237-245.
Direct Link  |  

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