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Homogeneous Charge Compression Ignition Combustion: Advantages Over Compression Ignition Combustion, Challenges and Solutions

机译:均质充气压缩点火燃烧:优于压缩点火燃烧的优点,挑战和解决方案

摘要

The homogeneous charge compression ignition (HCCI) engine uses a relatively new mode of combustion technology. In principle, there is no spark plug or injector to assist the combustion, and the combustion auto-ignites in multiple spots once the mixture has reached its chemical activation energy. It is noticeably faster than either compression ignition (CI) or spark ignition combustion (SI). The HCCI combustion mode provides better thermal efficiency and maintains low emission by modifying CI as well as SI engines. A wide variety of fuels, combinations of fuels and alternative fuels can be used in this technology. However, some challenges including combustion phase control, limited operating range, cold start, a high level of noise and homogeneous charge preparation need to be overcome for successful operation of HCCI engines. The objective of this study is to illustrate the engine performance and emission characteristics of HCCI engines at different test conditions and various challenges associated with these engines. Also introduced is a potential guideline to overcome these challenges and improve engine performance and emission characteristics. From the review, it can be concluded that HCCI combustion can be applied in existing CI engines with modifications and the most significant result of applying this combustion is the lower NOx and soot emissions with almost the same performance as with CI combustion.
机译:均质充量压缩点火(HCCI)发动机使用了相对较新的燃烧技术模式。原则上,没有火花塞或喷油器来辅助燃烧,一旦混合物达到其化学活化能,燃烧就会在多个位置自动点火。它明显比压缩点火(CI)或火花点火燃烧(SI)快。 HCCI燃烧模式通过改进CI和SI发动机提供了更好的热效率并保持了低排放。该技术可以使用多种燃料,燃料的组合和替代燃料。但是,为使HCCI发动机成功运行,需要克服一些挑战,包括燃烧阶段控制,有限的工作范围,冷启动,高水平的噪音和均匀的装料准备工作。这项研究的目的是说明HCCI发动机在不同测试条件下的发动机性能和排放特性以及与这些发动机相关的各种挑战。还介绍了克服这些挑战并改善发动机性能和排放特性的潜在指南。通过审查,可以得出结论,HCCI燃烧可以进行改进而应用于现有的CI发动机,并且进行这种燃烧的最显着结果是较低的NOx和烟尘排放,其性能几乎与CI燃烧相同。

著录项

  • 作者

    M. M. Hasan; M. M. Rahman;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
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