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An Investigation on Sensitivity of Ignition Delay and Activation Energy in Diesel Combustion

机译:柴油机点火延迟和活化能的敏感性研究。

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摘要

The auto-ignition process plays a major role in the combustion, performance, fuel economy, and emission in diesel engines. The auto-ignition quality of different fuels has been rated by its cetane number (CN) determined in the cooperative fuel research engine, according to ASTM D613. More recently, the ignition quality tester (IQT), a constant volume vessel, has been used to determine the derived cetane number (DCN) to avoid the elaborate, time consuming, and costly engine tests, according to ASTM D6890. The ignition delay (ID) period in these two standard tests and many investigations has been considered to be the time period between start of injection (SOI) and start of combustion (SOC). The ID values determined in different investigations can vary due to differences in instrumentation and definitions. This paper examines the different definitions and the parameters that effect ID period. In addition, the activation energy dependence on the ID definition is investigated. Furthermore, results of an experimental investigation in a single-cylinder research diesel engine will be presented, while the charge density is kept constant during the ID period. The global activation energy is determined and its sensitivity to the charge temperature is examined.
机译:自动点火过程在柴油机的燃烧,性能,燃油经济性和排放中起着重要作用。根据ASTM D613,通过在合作燃料研究引擎中确定的十六烷值(CN)来评定不同燃料的自燃质量。最近,根据ASTM D6890,使用恒容容器点火质量测试仪(IQT)确定十六烷值(DCN),以避免繁琐,费时且昂贵的发动机测试。在这两个标准测试和许多研究中,点火延迟(ID)周期被认为是喷射开始(SOI)和燃烧开始(SOC)之间的时间段。由于仪器和定义的不同,在不同调查中确定的ID值可能会有所不同。本文研究了影响ID期限的不同定义和参数。此外,还研究了激活能量对ID定义的依赖性。此外,将展示单缸研究型柴油机的实验研究结果,而在ID期间,电荷密度保持恒定。确定总体活化能,并检查其对充电温度的敏感性。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第9期|091506.1-091506.8|共8页
  • 作者单位

    Mechanical Engineering Department, Wayne State University, 5050 Anthony Wayne Drive, Suite 2100, Detroit, MI 48202;

    Mechanical Engineering Department, Wayne State University, 5050 Anthony Wayne Drive, Suite 2100, Detroit, MI 48202;

    Mechanical Engineering Department, Wayne State University, 5050 Anthony Wayne Drive, Suite 2100, Detroit, MI 48202;

    Mechanical Engineering Department, Wayne State University, 5050 Anthony Wayne Drive, Suite 2100, Detroit, MI 48202;

    U.S. Army RDECOM-TARDEC, 6501 E 11 Mile Road, Warren, MI 48092;

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