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An HCCI combustion engine system using on-board reformed gases of methanol with waste heat recovery : ignition control by hydrogen

机译:HCCI内燃机系统,该系统使用甲醇的机载重整气体并回收余热:氢气点火控制

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摘要

Adjusting a proportion of two fuels with different ignition properties is an effective technique for controlling the ignition timing in HCCI combustion. This research newly proposes an HCCI combustion engine system fuelled with dimethyl ether (DME) having a high cetane number and methanol-reformed gas (MRG) having a high anti-knock property. In the system, both DME and MRG are to be produced from methanol by onboard reformers utilising the exhaust heat from the engine. Because the reactions producing DME and MRG are endothermic, a part of exhaust heat energy can be recovered during the fuel reforming process. This research experimentally investigated characteristics of combustion, exhaust emissions, engine efficiency and overall thermal efficiency including the waste heat recovery through the fuel reforming in the HCCI combustion engine system. Because MRG consists of hydrogen and carbon monoxide, effects of the two on the autoignition of DME were also analysed.
机译:调节具有不同点火特性的两种燃料的比例是控制HCCI燃烧中点火正时的有效技术。这项研究新提出了一种HCCI内燃机系统,该系统由十六烷值高的二甲醚(DME)和抗爆性高的甲醇重整气体(MRG)组成。在该系统中,机载重整器将利用发动机的余热由甲醇生产DME和MRG。由于产生DME和MRG的反应是吸热的,因此可以在燃料重整过程中回收一部分废热能。这项研究实验性地研究了燃烧,排气排放,发动机效率和整体热效率的特性,包括通过HCCI内燃机系统中的燃料重整回收余热的特性。由于MRG由氢和一氧化碳组成,因此还分析了两者对DME自燃的影响。

著录项

  • 作者

    Shudo, Toshio;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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