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Experimental and numerical study of the effect of injection strategy and intake valve lift on super-knock and engine performance in a boosted GDI engine

机译:喷射策略和进气门升程对增压GDI发动机超爆震和发动机性能影响的实验和数值研究

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摘要

For four-stroke turbocharged gasoline direct injection engines, the improvement of pre-mixture homogeneity and the reduction of wall wetting are beneficial to improve combustion performance and emission characteristics, and specifically effective to suppress super-knock because of the decrease of oil dilution and soot formation. This paper investigated the effect of injection strategy and intake valve lift (IVL) on super-knock frequency and engine performance through experimental study. The validated numerical models revealed the mechanisms behind experimental results. The results showed that using late second injection under high-IVL condition and early single-injection under low-IVL condition reduced wall wetting and improved mixture homogeneity. This restrained the formation of pre-ignition origins (oil dilution and soot formation were decreased). The tendency of hot-spot self-ignition (local high-temperature region was narrowed) and end-gas detonation combustion (end-gas reactivity was reduced) was suppressed as well. These factors contributed to the reduction of the actual super-knock frequency in experiment. Further, late second injection under high-IVL condition and early single-injection under low-IVL condition also accelerated the flame propagation and promoted the complete combustion of fuel. Thus the dynamic and economic performance improved. CO and soot emissions also reduced, only NOx emission increased. Two-stage injection played the opposite role in engine performance respectively under high-IVL and low-IVL condition. In general, the combination of low-IVL and early single-injection showed the lowest super-knock frequency and best engine performance.
机译:对于四冲程涡轮增压汽油直喷发动机,提高混合气的均匀性和减少壁的润湿性有利于改善燃烧性能和排放特性,并且由于减少了油稀释和烟灰而特别有效地抑制了超级爆燃。编队。本文通过实验研究了喷射策略和进气门升程(IVL)对超爆震频率和发动机性能的影响。经过验证的数值模型揭示了实验结果背后的机理。结果表明,在高IVL条件下使用后期第二次注射,在低IVL条件下使用早期单次注射可减少壁润湿并改善混合物均匀性。这抑制了点火前起源的形成(减少了油稀释和烟灰的形成)。还抑制了热点自燃的趋势(局部高温区域变窄),并且抑制了尾气爆炸燃烧(降低了尾气反应性)。这些因素有助于减少实验中实际的超爆震频率。此外,在高IVL条件下的第二次喷射后期和在低IVL条件下的早期单次喷射也加速了火焰的传播并促进了燃料的完全燃烧。因此,动态和经济表现得到改善。一氧化碳和烟尘的排放也减少了,只有氮氧化物的排放增加了。在高IVL和低IVL条件下,两级喷射分别对发动机性能起相反的作用。通常,低IVL和早期单喷的组合显示出最低的超爆震频率和最佳的发动机性能。

著录项

  • 来源
    《Fuel》 |2019年第1期|309-325|共17页
  • 作者单位

    Dalian Univ Technol, Inst Internal Combust Engine, 2 Linggong Rd, Dalian, Peoples R China;

    Dalian Univ Technol, Inst Internal Combust Engine, 2 Linggong Rd, Dalian, Peoples R China;

    Dalian Univ Technol, Inst Internal Combust Engine, 2 Linggong Rd, Dalian, Peoples R China;

  • 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

    GDI; Injection strategy; Intake valve lift; Super-knock; Engine performance;

    机译:GDI;喷射策略;进气门升程;超爆震;发动机性能;

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