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Tytuł artykułu

Polytropic pressure analysis of HCCI combustion initiated by pulsed flame jet

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Homogeneous Charge Compression Ignition (HCCI) engines are the most promising future engines. However, it is quite difficult to control the ignition timing because the onset of the HCCI combustion depends on the autoignition of the fuel. On the other hand, Pulsed Flame Jet (PFJ) ignition has a great potential to enhance ignition reliability and burning rate of lean fuel/air mixtures, as it issues a turbulent jet plume of incomplete combustion products from the igniter and the volumetric combustion is initiated. Therefore, we considered the use of PFJ for the trigger of autoignition of HCCI combustion, and then we have demonstrated that PFJ has a potential for controlling the start of HCCI combustion directly. In this paper, the polytropic pressure analysis was done and it was revealed that the HCCI combustion with ignition timing control by PFJ showed higher effective use of heat released by the reactions of fuel than that without ignition timing control by PFJ.
Rocznik
Strony
167--175
Opis fizyczny
Bibliogr. 16 poz., rys.
Twórcy
autor
autor
autor
autor
  • Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan
Bibliografia
  • [1] Najt, P.M. and Foster, D.E.: Compressed-Ignited Homogeneous Charge Combustion. SAE Trans., 92, Sec. 1, (1984), pp. 964-979.
  • [2] Thring, R.H.: Homogeneous Charge Compression Ignition (HCCI) Engines. SAE Paper 892068, (1989).
  • [3] Takeda, Y., Nakagome, K. and Niimura, K.: Emission Characteristics of Premixed Lean Diesel Combustion with Extremely Early Staged Fuel Injection. SAE Paper 961163 (1996).
  • [4] Yanagihara, H.: Simultaneous Reduction of NOx and Soot in Diesel Engines Using a New Mixture Preparation Method. JSME International Journal, Series B, 40(4), (1997), pp. 592-598.
  • [5] Olsson, J. -O., Tunestal, P. and Johansson.B.: Closed-Loop Control of an HCCI Engine. SAE Paper 2001-01-1031 (2001).
  • [6] Flowers, D., Aceves, S.M., Martinez-Frias, J., Smith, J.R., All, M., Girard, J. and Dibble, R.: Operation of a Four-Cylinder 1.9L Propane Fueled Homogeneous Charge Compression Ignition Engine: Basic Operation Characteristics and Cylinder-to-Cylinder Effects. SAE Paper 2001-01-1895 (200 I).
  • [7] Oppenheim, AK., Beltramo, J., Faris, D.W., Maxson, J.A, Hom, K. and Stewart, H.E.: Combustion by Pulsed Jet Plumes - Key to Controlled Combustion Engines. SAE Trans., 98, Sec. 3, (1990), pp. 175-182.
  • [8] Murase, E., Ono, S., Hanada, K., and Oppenheim, AK.: Initiation of Combustion in Lean Mixtures by Flame Jets. Combust. Sci. Tech, 113-114, (1996), pp. 167-177.
  • [9] Wolanski, P., Dabkowski, A, and Przastek, J.: Influence of PJC Ignition on Efficiency and Emission of IC Piston Engine Operating at Partial and Full Load. SAE Paper 972871 (1997).
  • [10] Murase, K, Hanada, K., Harnakawa, T., and Hotta, K.: Effects of Spark Discharge Mode in Pulsed Flame Jet Igniter on OH Fluorescence Images in a Swirl Flow. Combust. Sci. Tech., (2004), 176, pp. 1-14.
  • [11] Murase, E. and Hanada, K.: Ignition Timing Control of Homogeneous Charge Compression Ignition Engines by Pulsed Flame Jets. Combust. Sci. Tech., 174, (2002), pp. 129-140.
  • [12] Murase, K and Hanada, K.: Control of the Start of HCCI Combustion by Pulsed Flame Jet. SAE Trans., Journal of Fuel and Lubricants, 111, Sec. 4, (2003), pp.1922-1933.
  • [13] Murase, E. and Hanada, Miyaura, T., and Ikeda, J.,: K.: Photographic Observation and Emission Spectral Analysis of HCCI Combustion. Combust. Sci. Tech., 177, (2005), pp. 1699-1723.
  • [14] Oppenheim, A.K.: Combustion in Piston Engines. (2004), Springer-Verlag.
  • [IS] Shen, Y., Schock H.J. and Oppenheim, A.K.: Pressure Diagnostics of Closed System in a Direct Injection Spark Ignition Engine. SAE Paper, 2003-01-0723, (2003).
  • [16] Murase, K: Performance of pulsed combustion jet in a rapid compression machine. Arch. Combust. 15 (1995), No. 3-4, pp. 173-185.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM4-0040-0024
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