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Effect of injection pressure and ambient density on spray characteristics of diesel and biodiesel surrogate fuels

机译:注射压力和环境密度对柴油和生物柴油替代燃料喷射特性的影响

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摘要

This paper presents novel experimental investigations on the influence of varying injection pressure and ambient density on evaporating sprays of diesel, tetradecane (as a diesel surrogate) and methyl oleate (as a biodiesel surrogate) fuels. Evidently, adapting high injection pressure and ambient density would remarkably enhance the atomization process, and in return improve the engine combustion, performance, and emission characteristics. Measurements were carried out in a rapid compression and expansion machine (RCEM) working under diesel engine-like conditions. Furthermore, a shadowgraph optical technique was applied, using a high-speed camera to capture the spray development at 20,000 frames per second (fps) to obtain the vapor penetration length, liquid penetration length and spray cone angle. The tested fuel was injected into a pressurized nitrogen gas in a diesel engine-like condition without combustion where the injection pressure and ambient density were varied from 50 MPa to 150 MPa, and from15 kg/m(3) to 25 kg/m(3), respectively. Results indicated that injection pressure and ambient density have a significant effect on the spray characteristics. Increasing the injection pressure from 50 MPa to 150 MPa results in the increase of vapor penetration by up to 33.2%, 21.5% and 24.4% for diesel, tetradecane and methyl oleate, respectively. Besides, increasing the ambient density from 15 kg/m3 to 25 kg/m3 results in a wider spray cone angle by up to 9.6%, 11.8% and 13.8%, for diesel, tetradecane and methyl oleate, respectively and a shorter vapor penetration by up to 9.2%, 11% and 13.1%, respectively. It is noticed that high injection pressure causes the least reduction in spray cone angle for biodiesel. The present measurements are considered bench-mark for validation of high-fidelity numerical simulation of diesel and biodiesel sprays.
机译:本文提出了关于不同注射压力和环境密度对柴油,四癸烷(作为柴油替代)和甲基甲酸甲酯(作为生物柴油替代)燃料的影响的影响的新型实验研究。显然,适应高压压力和环境密度将显着提高雾化过程,并且在回报方案中提高发动机燃烧,性能和排放特性。在柴油发动机状条件下工作的快速压缩和膨胀机(RCEM)中进行测量。此外,使用高速相机应用了一种影子图光学技术,以捕获每秒20,000帧(FPS)的喷雾开发,以获得蒸汽渗透长度,液体穿透长度和喷雾锥角。在柴油发动机状状态下将测试的燃料注入加压氮气,而没有燃烧,其中喷射压力和环境密度从50MPa变化,并且从15kg / m(3)至25kg / m(3 ), 分别。结果表明,注射压力和环境密度对喷射特性具有显着影响。将注射压力从50MPa增加到150MPa导致柴油,四癸烷和甲酯的蒸汽渗透的增加高达33.2%,21.5%和24.4%。此外,将环境密度从15kg / m3〜25kg / m 3增加,柴油,四癸烷和甲基糖的较宽喷雾锥角度高达9.6%,11.8%和13.8%,并通过较短的蒸汽渗透分别高达9.2%,11%和13.1%。注意到,高注射压力导致生物柴油的喷雾锥角最小。本测量被认为是用于验证柴油和生物柴油喷雾的高保真数值模拟的基准标记。

著录项

  • 来源
    《Fuel》 |2019年第15期|115674.1-115674.14|共14页
  • 作者单位

    E JUST Energy Resources Engn Dept POB 179-21934 Alexandria Egypt;

    Tokyo Inst Technol Sch Engn Dept Syst & Control Engn Meguro Ku 2-12-1 Ookayama Tokyo 1528552 Japan;

    Tokyo Inst Technol Sch Engn Dept Syst & Control Engn Meguro Ku 2-12-1 Ookayama Tokyo 1528552 Japan;

    Tokyo Inst Technol Sch Engn Dept Syst & Control Engn Meguro Ku 2-12-1 Ookayama Tokyo 1528552 Japan;

    E JUST Energy Resources Engn Dept POB 179-21934 Alexandria Egypt|Alexandria Univ Fac Engn Mech Engn Dept Alexandria 21544 Egypt;

    E JUST Energy Resources Engn Dept POB 179-21934 Alexandria Egypt;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Evaporating spray; Diesel; Tetradecane; Methyl oleate; RCEM;

    机译:蒸发喷雾;柴油;四烷;甲基油脂;RCEM;

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