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An experimental study was conducted on the air-water two-phase flow patterns in the bed of rectangular cross sections containing spheres of regular distribution. Three kinds of glass spheres with diff...

Combustion Characteristics of HCCI in Motorcycle Engine

J. Eng. Gas Turbines Power  -- April 2010 --  Volume 132,  Issue 4, 044501 (4 pages)
doi:10.1115/1.3205024

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Author(s):
Yuh-Yih Wu and Ching-Tzan Jang
Department of Vehicle Engineering, National Taipei University of Technology, Taipei, Taiwan 10608, R.O.C.

Bo-Liang Chen
Mechanical and Systems Research Laboratories, Industrial Technology Research Institute, Hsinchu, Taiwan 31040, R.O.C.
Homogeneous charge compression ignition (HCCI) is recognized as an advanced combustion system for internal combustion engines that reduces fuel consumption and exhaust emissions. This work studied a 150 cc air-cooled, four-stroke motorcycle engine employing HCCI combustion. The compression ratio was increased from 10.5 to 12.4 by modifying the cylinder head. Kerosene fuel was used without intake air heating and operated at various excess air ratios (lambda), engine speeds, and exhaust gas recirculation (EGR) rates. Combustion characteristics and emissions on the target engine were measured. It was found that keeping the cylinder head temperature at around 120–130°C is important for conducting a stable experiment. Two-stage ignition was observed from the heat release rate curve, which was calculated from cylinder pressure. Higher lambda or EGR causes lower peak pressure, lower maximum rate of pressure rise (MRPR), and higher emission of CO. However, EGR is better than lambda for decreasing the peak pressure and MRPR without deteriorating the engine output. Advancing the timing of peak pressure causes high peak pressure, and hence increases MRPR. The timing of peak pressure around 10–15 degree of crank angle after top dead center indicates a good appearance for low MRPR.

©2010 American Society of Mechanical Engineers

History: Received 3 April 2009; revised 11 June 2009; published 22 January 2010
doi: http://dx.doi.org/10.1115/1.3205024

KEYWORDS and PACS

Keywords
PACS
  • 89.40.Bb
    Land transportation
  • YEAR: 2010

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PUBLICATION DATA

Doc Type:
Technical Brief, Technical Note, Brief Note
Coden:
JETPEZ
ISSN:
0742-4795 (print)   1528-8919 (online)
Publisher:
AIP is a member of CrossRef ASME

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