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The potential of using natural gas in HCCI engines: Results from zero- and multi-dimensional simulations.

机译:HCCI发动机中使用天然气的潜力:零维和多维模拟的结果。

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摘要

With the depletion of petroleum based fuels and the corresponding concerns of national energy security issues, natural gas as an alternative fuel in IC engine applications has become an attractive option. Natural gas requires minimum mixture preparation, and is chemically stable, both of which make it a suitable fuel for homogeneous charged compression ignition (HCCI) engines. Compared to petroleum based fuels, natural gas produces less green-house emissions. However, natural gas is hard to auto-ignite and therefore requires a higher compression ratio, some amount of intake heating, or some type of pre-ignition. In addition, natural gas usually has large differences in fuel composition from field to field, which adds more uncertainties for engine applications.;The current study determines the auto-ignition characteristics, engine performance, and nitric oxides emissions as functions of major operating parameters for a natural gas fueled HCCI engine, and determines differences relative to gasoline fueled HCCI engines which have been studied for many years. These tasks have been done using both zero- and multi-dimensional engine simulations.;By zero-dimensional simulation, the effects of varying equivalence ratios, engine speeds, compression ratio, EGR level, intake pressure and fuel compositions are determined and analyzed in detail. To be able to account for the in-cylinder inhomogeneous effect on the HCCI combustion, multi-zone models coupled with cold-flow CFD simulations are employed in addition to the single-zone model. The effects of non-homogeneous temperature and equivalence ratio stratification on the ignition timing, combustion phasing, and emissions formation have been studied and discussed. Finally, the preliminary two-dimensional axial-symmetric CFD simulations have been conducted to study the in-cylinder temperature and the species distributions, which provide better visualization of the natural gas auto-ignition process.
机译:随着基于石油的燃料的枯竭和对国家能源安全问题的相应关注,天然气作为IC发动机应用中的替代燃料已成为一种有吸引力的选择。天然气需要最少的混合气制备,并且化学性质稳定,这两种气体均使其成为均质充量压燃(HCCI)发动机的合适燃料。与石油基燃料相比,天然气产生的温室气体更少。但是,天然气很难自动点火,因此需要更高的压缩比,一定量的进气加热或某种类型的预点火。此外,天然气在不同领域之间通常在燃料成分上存在很大差异,这为发动机应用增加了更多不确定性。;当前的研究确定了自动点火特性,发动机性能和一氧化氮排放作为主要工作参数的函数。天然气HCCI发动机,并确定了与已研究多年的汽油HCCI发动机相比的差异。这些任务已使用零维和多维发动机仿真完成。通过零维仿真,确定并详细分析了不同当量比,发动机转速,压缩比,EGR水平,进气压力和燃料成分的影响。 。为了能够解释缸内对HCCI燃烧的不均匀影响,除单区域模型外,还采用了多区域模型以及冷流CFD模拟。研究和讨论了非均匀温度和当量比分层对点火正时,燃烧定相和排放物形成的影响。最后,已经进行了初步的二维轴对称CFD模拟,以研究缸内温度和物质分布,从而可以更好地可视化天然气自燃过程。

著录项

  • 作者

    Zheng, Junnian.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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