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Combustion Characteristics of HCCI in Motorcycle Engine

机译:摩托车发动机HCCI的燃烧特性

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摘要

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 (λ), engine speeds, and exhaust gas re-circulation (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℃ 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 λ. or EGR causes lower peak pressure, lower maximum rate of pressure rise (MRPR), and higher emission of CO. However, EGR is better than λ 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.
机译:均质增压压缩点火(HCCI)被公认为是内燃机的先进燃烧系统,可减少燃料消耗和废气排放。这项工作研究了采用HCCI燃烧的150 cc风冷四冲程摩托车发动机。通过修改气缸盖,压缩比从10.5增加到12.4。使用煤油燃料时无需进气加热,并在各种过量空气比率(λ),发动机转速和废气再循环(EGR)速率下运行。测量目标发动机的燃烧特性和排放。发现将气缸盖温度保持在120-130℃左右对于进行稳定的实验很重要。从放气率曲线观察到两级点火,该放气率曲线是根据气缸压力计算得出的。更高的λ。或EGR会导致较低的峰值压力,较低的最大压力上升速率(MRPR)和较高的CO排放。但是,对于降低峰值压力和MRPR而不降低发动机输出,EGR优于λ。提前峰值压力的时间会导致较高的峰值压力,因此会增加MRPR。上死点后大约10-15度曲柄角附近的峰值压力正时表明MRPR低时外观良好。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2010年第4期|044501.1-044501.4|共4页
  • 作者单位

    Department of Vehicle Engineering, National Taipei University of Technology, Taipei, Taiwan 10608, R.O.C.;

    Department of Vehicle Engineering, National Taipei University of Technology, Taipei, Taiwan 10608, R.O.C.;

    Mechanical and Systems Research Laboratories, Industrial Technology Research Institute, Hsinchu, Taiwan 31040, R.O.C.;

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