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Visualization Research on Low-Temperature Ignition and Combustion Characteristics of Diesel/Gasoline Blends Under Cold-Start Conditions

机译:冷启动条件下柴油/汽油共混物低温点火和燃烧特性的可视化研究

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摘要

Although engines fueled with diesell gasoline blends show excellent combustion and emission performance, its low-temperature flame development characteristics under cold-start conditions remain to be further verified. To clarify the details, experiments were conducted in an optical constant volume combustion chamber using Mie-scattering and direct photography methods at different ambient temperatures. Results show that the ignition delay of pure diesel during spray combustion shows a zero temperature coefficient (ZTC) region, and the addition of gasoline weakens the ZTC behavior until it disappears. The cool flame initiates the ignition, and the hot flame tends to far from the base of the cool flame as the gasoline content increases. In addition, the addition of gasoline to diesel increases the ratio of cool flames because the high evaporation reduces the temperature in the mixing zone, so only cool flame occurs in the G45 blends. Consequently, the total flame intensity presents an order of magnitude decrease. At lower ambient temperatures, the addition of gasoline significantly increases ignition instability. It is difficult to convert a cool flame into a hot flame due to the inhomogeneity of temperature and species field, which results in various unstable ignition phenomena, such as a short flash cool flame and intermittent cool and hot flame. Therefore, it is essential to directly target the cool flame and pay attention to the intrinsic mechanism of the evolution from the cool flame to the hot flame during the spray combustion process.
机译:虽然用柴油汽油混合物向发动机提供了出色的燃烧和排放性能,但其在冷启动条件下的低温火焰开发特性仍然需要进一步验证。为了阐明细节,在不同的环境温度下使用MIE散射和直接拍摄方法在光学恒定体积燃烧室中进行实验。结果表明,喷雾燃烧期间纯柴油的点火延迟显示出零温度系数(ZTC)区域,加入汽油削弱ZTC行为,直至其消失。随着汽油含量的增加,冷火焰引发点火,热火焰远离冷火焰的底部。另外,向柴油添加汽油增加了冷火焰的比例,因为高蒸发降低了混合区中的温度,因此在G45共混物中仅发生冷火焰。因此,总火焰强度呈现幅度下降。在较低的环境温度下,添加汽油显着提高了点火不稳定。由于温度和物种场的不均匀性,难以将冷火焰转化为热火焰,这导致各种不稳定点火现象,例如短闪光冷却火焰和间歇冷和热火焰。因此,必须直接瞄准冷火焰并注意在喷雾燃烧过程中从冷火焰到热火焰的进化的内在机构。

著录项

  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2020年第6期|061011.1-061011.9|共9页
  • 作者单位

    School of Mechanical Engineering Beijing Institute of Technology Beijing 100081 China;

    School of Mechanical Engineering Beijing Institute of Technology Beijing 100081 China Department of Mechanical Science and Engineering University of Illinois at Urbana-Champaign Champaign IL 61801;

    School of Mechanical Engineering Beijing Institute of Technology Beijing 100081 China;

    China North Engine Research Institute Tianjin 300400 China;

    School of Mechanical Engineering Beijing Institute of Technology Beijing 100081 China;

    School of Mechanical Engineering Beijing Institute of Technology Beijing 100081 China;

    School of Mechanical Engineering Beijing Institute of Technology Beijing 100081 China Beijing Electric Vehicle Collaborative Innovation Center Beijing 100081 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cold-start; diesell gasoline blends; spray combustion; cool flame; low- temperature ignition;

    机译:冷启动;柴油汽油混合;喷雾燃烧;酷火焰;低温点火;

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