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Investigation on soot emissions from diesel-CNG dual-fuel

机译:柴油-CNG双燃料烟尘排放调查

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摘要

The burning of diesel and compressed natural gas (CNG) is attractive compared to diesel fuel because of the reduction of CO2 emissions and particulate matter (PM) emissions. While soot emissions from the diesel-CNG combustion can be tested in a real-world singlecylinder engine, the soot formation characteristics cannot be tested in the same way. Therefore, to understand the mechanisms behind soot formation in diesel-CNG combustion, soot evolution must be investigated using a simulation model. In this study, the soot evolution is investigated under different CNG substitution ratios with single and split fuel injection. An AVL 5402 single-cylinder diesel engine was modified to run diesel/CNG dualfuel to investigate the combustion and soot emissions. A new soot model using KIVA-3V R2 code and integrated with a reduced heptane/methane PAH (polycyclic aromatic hydrocarbons) mechanism was used to simulate soot behavior. For the combustion, the results show that the ignition delay gets extended, the combustion duration gets shorter and the peak pressure can be improved when CNG substitution ratio is increased both with single and split injection. Additionally, a slight increase of pressure is observed when the split injection is used. This is because the split injection is an effective strategy to change the distribution and vaporization of fuel, which results in an incremental increase in combustion efficiency and increase pressure. As the CNG substitution ratio is increased, soot emissions get drastically reduced. The reason is the equivalence ratio distribution of airfuel becomes more homogenous and the local fuel-rich region shrinks with increasing of CNG substitution ratios. Pyrene is an important intermediate specie to generate soot particles. The results show that pyrene distribution decreases, leading to a reduced generation of soot precursors. As a result, the soot mass of CNG70 is less than the other two cases. The basic reason is the prolonged ignition delay allowed for more time for fuel-air mixing, which reduces soot mass formation. (C) 2019 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:柴油和压缩天然气(CNG)的燃烧比柴油燃料更具吸引力,因为它减少了CO2排放和颗粒物(PM)排放。尽管可以在现实世界的单缸发动机中测试柴油CNG燃烧产生的烟尘排放,但不能以相同的方式测试烟尘形成特性。因此,要了解柴油CNG燃烧中烟灰形成的机理,必须使用模拟模型研究烟灰的演变。在这项研究中,研究了在单次燃料喷射和分段燃料喷射的不同CNG替代比下烟灰的演变。对AVL 5402单缸柴油发动机进行了改装,使其运行柴油/ CNG双燃料,以研究燃烧和烟尘排放。使用KIVA-3V R2代码并集成了还原的庚烷/甲烷PAH(多环芳烃)机理的新烟灰模型来模拟烟灰行为。对于燃烧,结果表明,通过单次喷射和分次喷射提高CNG替代率,点火延迟会延长,燃烧持续时间会缩短,并且峰值压力可以得到改善。此外,使用分流进样时,观察到压力略有增加。这是因为分流喷射是改变燃料分布和汽化的有效策略,其导致燃烧效率的增加和压力的增加。随着CNG替代率的提高,烟尘排放量将大大减少。原因是随着CNG替代率的增加,空气燃料的当量比分布变得更加均匀,并且局部富燃料区域缩小。 is是产生烟灰颗粒的重要中间物种。结果表明,distribution分布减少,导致烟灰前体的生成减少。结果,CNG70的烟尘质量小于其他两种情况。根本原因是延长的点火延迟为燃油与空气的混合留出了更多的时间,从而减少了烟尘的形成。 (C)2019由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

著录项

  • 来源
    《International journal of hydrogen energy》 |2019年第18期|9438-9449|共12页
  • 作者单位

    Beijing Inst Technol, Sch Mech Engn, Beijing 100081, Peoples R China|Univ Illinois, Dept Mech Sci & Engn, Urbana, IL 61801 USA;

    Beijing Inst Technol, Sch Mech Engn, Beijing 100081, Peoples R China;

    Beijing Inst Technol, Sch Mech Engn, Beijing 100081, Peoples R China|Univ Illinois, Dept Mech Sci & Engn, Urbana, IL 61801 USA;

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

    Dual-fuel combustion; KIVA-3V R2 code; Soot model; Single and split injection;

    机译:双燃料燃烧;KIVA-3V R2代码;煤烟模型;单喷和分喷;
  • 入库时间 2022-08-18 04:19:51

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