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Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane

Year 2017, Volume: 1 Issue: 1, 1 - 6, 30.04.2017

Abstract

One of the most effective methods
to control the combustion phasing of a homogeneous charged compression ignition
(HCCI) engine is injection timing. Injection timing affects the homogeneity of
the mixture, start of combustion and heat release rate. In this study, the
effects of injection timing on in-cylinder pressure, heat release rate,
pressure rise rate and combustion duration were investigated in early direct
injection HCCI engine as experimentally. The experiments were performed at 6
different injection timings ranging between 20 ◦bTDC and 270 ◦bTDC using
n-heptane as the fuel. Test results showed that maximum in-cylinder pressure
increased and start of combustion was advanced when the injection timing was
advanced. Maximum in-cylinder pressures of 4.7 bar at 2 ◦bTDC and 3.4 bar at -9
◦bTDC were obtained at injection timings of 270 ◦bTDC and 20 ◦bTDC,
respectively. Moreover, single stage HCCI combustion was observed and
combustion duration increased when the fuel was injected towards to TDC. An
advance in the injection timing resulted in an increase in maximum pressure
rise rate (MPRR). MPRR of 1.1 bar/ºCA at 6 ºCA bTDC was obtained at an
injection timing of 180 ºCA bTDC. Therefore, combustion phasing in HCCI engines
was controlled by changing the injection timing and the knock limit was estimated.

References

  • Zhao, H. (2007). HCCI and CAI engines for the automotive industry (First edition). England: Woodhead Pubh. Limited and CRC Press LLC.
  • He, B-Q. Liu, M-B. Zhao, H. (2015) Comparison of combustion characteristics of n-butanol/ethanol–gasoline blends in a HCCI engine, Energy Conversion and Management, 95, 101–109.
  • Yao, M., Zheng Z, Liu, H. (2009) Progress and recent trends in homogeneous charge compression ignition (HCCI) engines. Prog Energy Combust Sci., 35(5), 398–437.
  • Cinar, C., Uyumaz, A., Solmaz, H., Sahin, F., Polat, S. and Yılmaz, E. (2015). Effects of intake air temperature on combustion, performance and emission characteristics of a HCCI engine fueled with the blends of 20% n-heptane and 80% isooctane fuels. Fuel Processing Technology, 130(-), 275-281.
  • Hamada, K., Niijima, S., Yoshida, K., Yoshida, K., Shoji, H., Shimada, K. and Shibano, K. (2005). The effects of the compression ratio, equivalence ratio, and intake air temperature on ignition timing in an HCCI engine using DME fuel. Society of Automotive Engineering, Paper No: 2005-32-0002.
  • Haraldsson, G., Tunestal, P., Johansson, B. and Hyvönen, J. (2002). HCCI combustion phasing in a multi cylinder engine using variable compression ratio. Society of Automotive Engineering, Paper No: 2002-01-2858.
  • Jari Hyvönen, J., Haraldsson, G. and Johansson, B. (2003). Operating range in a multi-cylinder HCCI engine using variable compression ratio. Society of Automotive Engineering, Paper No: 2003-01-1829.
  • Agrell, F. (2006). Control of HCCI by aid of variable valve timings with specialization in usage of a non-linear quasi-static compensation. Ph. D. Thesis, KTH Royal Institute of Technology, Stockholm, Sweden, 8-11.
  • Shaver, G. M., Roelle, M. and Gerdes, J. C. (2004). Modeling cycle-to-cycle coupling in HCCI engines utilizing variable valve actuation. Paper presented at the Proceedings of the 1st Intr. Federation of Automatic Cont. Symp. on Advances in Automotive Control, Salerno, Italy, 244-249.
  • Cinar, C., Uyumaz, A., Solmaz, H. and Topgül, T. (2015) Effects of valve lift on the combustion and emissions of a HCCI gasoline engine. Energy Conversion and Management, 94, 159-168.
  • Lü, X., Chen, W. and Huang, Z. (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(9), 1074–1083.
  • Lü, X., Chen, W. and Huang, Z. (2005). A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR, Part 2: Effect of operating conditions and EGR on HCCI combustion. Fuel, 84(9), 1084–1092.
  • Cınar, C., Uyumaz, A., Polat, S., Solmaz, H. and Yılmaz, E. (2015). Influence of residual gas fraction on performance and combustion characteristics in a HCCI engine with reduced valve lift. Paper presented at Scnd. Int. Rsrch. Conf. on Eng., Science and Management, Dubai, 1-8.
  • Polat, S., Kannan, K., Shahbakhti, M., Uyumaz, A. and Yucesu, H. S. (2015). An experimental study for the effects of supercharging on performance and combustion of an early direct injection HCCI engine. Paper presented at Second International Research Conference on Engineering, Science and Management, Dubai, 1-8.
  • Uyumaz, A., (2015). An experimental investigation into combustion and performance characteristics of an HCCI gasoline engine fueled with n-heptane, isopropanol and n-butanol fuel blends at different inlet air temperatures. Energy Conversion and Management, 98, 199-208.
  • Cinar, C., Ozer, C., Sahin, F. and Yucesu, H.S. (2010). Effects of premixed diethyl ether (DEE) on combustion and exhaust emissions in a HCCI-DI diesel engine. Applied Thermal Engineering, 30(4), 360-365.
  • Aceves, S. M., Flowers, D., Martinez-Frias, J. and Dibble, R. (2003). Fuel and additive characterization for HCCI combustion. Society of Automotive Engineering, Paper No: 2003-01-0184.
  • Turkcan A., Ozsezen, A. N. and Canakci, M. (2013). Effects of second injection timing on combustion characteristics of a two stage direct injection gasoline-alcohol HCCI engine. Fuel, 111(-), 30-39.
  • Turkcan A., Ozsezen, A. N. and Canakci, M. (2014). Experimental investigation of the effects of different injection parameters on a direct injection HCCI engine fueled with alcohol–gasoline fuel blends. Fuel Processing Technology, 126, 487-496.
  • Das, P., Subbarao, P. M. V. and Subrahmanyam, J. P. (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 Conversion and Management, 95,248-258.
  • Petit A, Lavy J, Monnier G and Montagne X (1993), Speciated Hydrocarbon Analysis: A Helpful Tool for Two-Stroke Engine Development’, in Duret P, A New Generation of Two-Stroke Engines for the Future?, IFP International Seminar, Rueil-Malmaison, Editions Technip.
  • Standing, R., Kalian, N., Ma, T., Zhao, H., ‘Effects of injection timing and valve timings on CAI operation in a multi-cylinder DI gasoline engine’, SAE paper 2005-01-0132, 2005.
  • Heywood, J. B. (1988). Internal combustion engines fundamentals (First edition). New York: McGraw-Hill.
  • Baumgarten, C. (2006). Mixture formation in internal combustion engine (First edition). Germany: Springer-Verlag Berlin Heidelberg.
Year 2017, Volume: 1 Issue: 1, 1 - 6, 30.04.2017

Abstract

References

  • Zhao, H. (2007). HCCI and CAI engines for the automotive industry (First edition). England: Woodhead Pubh. Limited and CRC Press LLC.
  • He, B-Q. Liu, M-B. Zhao, H. (2015) Comparison of combustion characteristics of n-butanol/ethanol–gasoline blends in a HCCI engine, Energy Conversion and Management, 95, 101–109.
  • Yao, M., Zheng Z, Liu, H. (2009) Progress and recent trends in homogeneous charge compression ignition (HCCI) engines. Prog Energy Combust Sci., 35(5), 398–437.
  • Cinar, C., Uyumaz, A., Solmaz, H., Sahin, F., Polat, S. and Yılmaz, E. (2015). Effects of intake air temperature on combustion, performance and emission characteristics of a HCCI engine fueled with the blends of 20% n-heptane and 80% isooctane fuels. Fuel Processing Technology, 130(-), 275-281.
  • Hamada, K., Niijima, S., Yoshida, K., Yoshida, K., Shoji, H., Shimada, K. and Shibano, K. (2005). The effects of the compression ratio, equivalence ratio, and intake air temperature on ignition timing in an HCCI engine using DME fuel. Society of Automotive Engineering, Paper No: 2005-32-0002.
  • Haraldsson, G., Tunestal, P., Johansson, B. and Hyvönen, J. (2002). HCCI combustion phasing in a multi cylinder engine using variable compression ratio. Society of Automotive Engineering, Paper No: 2002-01-2858.
  • Jari Hyvönen, J., Haraldsson, G. and Johansson, B. (2003). Operating range in a multi-cylinder HCCI engine using variable compression ratio. Society of Automotive Engineering, Paper No: 2003-01-1829.
  • Agrell, F. (2006). Control of HCCI by aid of variable valve timings with specialization in usage of a non-linear quasi-static compensation. Ph. D. Thesis, KTH Royal Institute of Technology, Stockholm, Sweden, 8-11.
  • Shaver, G. M., Roelle, M. and Gerdes, J. C. (2004). Modeling cycle-to-cycle coupling in HCCI engines utilizing variable valve actuation. Paper presented at the Proceedings of the 1st Intr. Federation of Automatic Cont. Symp. on Advances in Automotive Control, Salerno, Italy, 244-249.
  • Cinar, C., Uyumaz, A., Solmaz, H. and Topgül, T. (2015) Effects of valve lift on the combustion and emissions of a HCCI gasoline engine. Energy Conversion and Management, 94, 159-168.
  • Lü, X., Chen, W. and Huang, Z. (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(9), 1074–1083.
  • Lü, X., Chen, W. and Huang, Z. (2005). A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR, Part 2: Effect of operating conditions and EGR on HCCI combustion. Fuel, 84(9), 1084–1092.
  • Cınar, C., Uyumaz, A., Polat, S., Solmaz, H. and Yılmaz, E. (2015). Influence of residual gas fraction on performance and combustion characteristics in a HCCI engine with reduced valve lift. Paper presented at Scnd. Int. Rsrch. Conf. on Eng., Science and Management, Dubai, 1-8.
  • Polat, S., Kannan, K., Shahbakhti, M., Uyumaz, A. and Yucesu, H. S. (2015). An experimental study for the effects of supercharging on performance and combustion of an early direct injection HCCI engine. Paper presented at Second International Research Conference on Engineering, Science and Management, Dubai, 1-8.
  • Uyumaz, A., (2015). An experimental investigation into combustion and performance characteristics of an HCCI gasoline engine fueled with n-heptane, isopropanol and n-butanol fuel blends at different inlet air temperatures. Energy Conversion and Management, 98, 199-208.
  • Cinar, C., Ozer, C., Sahin, F. and Yucesu, H.S. (2010). Effects of premixed diethyl ether (DEE) on combustion and exhaust emissions in a HCCI-DI diesel engine. Applied Thermal Engineering, 30(4), 360-365.
  • Aceves, S. M., Flowers, D., Martinez-Frias, J. and Dibble, R. (2003). Fuel and additive characterization for HCCI combustion. Society of Automotive Engineering, Paper No: 2003-01-0184.
  • Turkcan A., Ozsezen, A. N. and Canakci, M. (2013). Effects of second injection timing on combustion characteristics of a two stage direct injection gasoline-alcohol HCCI engine. Fuel, 111(-), 30-39.
  • Turkcan A., Ozsezen, A. N. and Canakci, M. (2014). Experimental investigation of the effects of different injection parameters on a direct injection HCCI engine fueled with alcohol–gasoline fuel blends. Fuel Processing Technology, 126, 487-496.
  • Das, P., Subbarao, P. M. V. and Subrahmanyam, J. P. (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 Conversion and Management, 95,248-258.
  • Petit A, Lavy J, Monnier G and Montagne X (1993), Speciated Hydrocarbon Analysis: A Helpful Tool for Two-Stroke Engine Development’, in Duret P, A New Generation of Two-Stroke Engines for the Future?, IFP International Seminar, Rueil-Malmaison, Editions Technip.
  • Standing, R., Kalian, N., Ma, T., Zhao, H., ‘Effects of injection timing and valve timings on CAI operation in a multi-cylinder DI gasoline engine’, SAE paper 2005-01-0132, 2005.
  • Heywood, J. B. (1988). Internal combustion engines fundamentals (First edition). New York: McGraw-Hill.
  • Baumgarten, C. (2006). Mixture formation in internal combustion engine (First edition). Germany: Springer-Verlag Berlin Heidelberg.
There are 24 citations in total.

Details

Subjects Mechanical Engineering
Journal Section Research Articles
Authors

Seyfi Polat

H. Serdar Yücesu

Kaushik Kannan This is me

Ahmet Uyumaz

Hamit Solmaz

Mahdi Shahbakhthi This is me

Publication Date April 30, 2017
Submission Date January 25, 2017
Published in Issue Year 2017 Volume: 1 Issue: 1

Cite

APA Polat, S., Yücesu, H. S., Kannan, K., Uyumaz, A., et al. (2017). Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane. International Journal of Automotive Science And Technology, 1(1), 1-6. https://doi.org/10.30939/ijastech..288015
AMA Polat S, Yücesu HS, Kannan K, Uyumaz A, Solmaz H, Shahbakhthi M. Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane. ijastech. April 2017;1(1):1-6. doi:10.30939/ijastech.288015
Chicago Polat, Seyfi, H. Serdar Yücesu, Kaushik Kannan, Ahmet Uyumaz, Hamit Solmaz, and Mahdi Shahbakhthi. “Experimental Comparison of Different Injection Timings in an HCCI Engine Fueled With N-Heptane”. International Journal of Automotive Science And Technology 1, no. 1 (April 2017): 1-6. https://doi.org/10.30939/ijastech. 288015.
EndNote Polat S, Yücesu HS, Kannan K, Uyumaz A, Solmaz H, Shahbakhthi M (April 1, 2017) Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane. International Journal of Automotive Science And Technology 1 1 1–6.
IEEE S. Polat, H. S. Yücesu, K. Kannan, A. Uyumaz, H. Solmaz, and M. Shahbakhthi, “Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane”, ijastech, vol. 1, no. 1, pp. 1–6, 2017, doi: 10.30939/ijastech..288015.
ISNAD Polat, Seyfi et al. “Experimental Comparison of Different Injection Timings in an HCCI Engine Fueled With N-Heptane”. International Journal of Automotive Science And Technology 1/1 (April 2017), 1-6. https://doi.org/10.30939/ijastech. 288015.
JAMA Polat S, Yücesu HS, Kannan K, Uyumaz A, Solmaz H, Shahbakhthi M. Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane. ijastech. 2017;1:1–6.
MLA Polat, Seyfi et al. “Experimental Comparison of Different Injection Timings in an HCCI Engine Fueled With N-Heptane”. International Journal of Automotive Science And Technology, vol. 1, no. 1, 2017, pp. 1-6, doi:10.30939/ijastech. 288015.
Vancouver Polat S, Yücesu HS, Kannan K, Uyumaz A, Solmaz H, Shahbakhthi M. Experimental comparison of different injection timings in an HCCI engine fueled with n-heptane. ijastech. 2017;1(1):1-6.


International Journal of Automotive Science and Technology (IJASTECH) is published by Society of Automotive Engineers Turkey

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