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Spark plug-based diagnostics for fuel-air ratio determination.

机译:基于火花塞的诊断,用于确定燃油空气比。

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摘要

Experiments were performed in a simulated combustion chamber with non-combustible and combustible mixtures to study the feasibility of spark plug based diagnostics for fuel-air ratio determination in the spark plug gap of a Spark Ignition (SI) engine at ignition. During the experiments, the breakdown voltage (V{dollar}rmsb{lcub}s{rcub}{dollar}) as well as the spark light emission were measured to correlate to the characteristics of the gas mixture. A simulated combustion chamber was used rather than an actual engine to obtain better control of mixture composition and other experimental parameters.; The dependence of V{dollar}rmsb{lcub}s{rcub}{dollar} on the pressure, the temperature, the gas composition and the gap size was tested in non-combustible mixtures by measuring the true values of V{dollar}rmsb{lcub}s{rcub}{dollar} and the agreement between the experimental results and Paschen's Law was studied. In addition, the correlation between V{dollar}rmsb{lcub}s{rcub}{dollar} and the fuel-air equivalence ratio ({dollar}phi{dollar}), as well as the residual gas fraction (RGF) was tested in combustible mixtures.; In the measurements of spark light intensities, relative intensity (the spectral intensity of a particular molecule normalized by the shot or broadband intensity) was studied to reduce the effect of the variations of orientation of the spark initiation. The relative intensity of the CN radical, centered at 385 nm, was tested to have the strongest intensity 5 {dollar}mu{dollar}s after the spark ignition compared to those of the other radicals, such as CH and NH. It has also been found that the relative intensity of CN has great dependence on {dollar}phi{dollar} as well as RGF.; The study of this spark plug based diagnostics provides a feasible method for determination of mixture composition in the spark plug gap at ignition.
机译:在具有不可燃和可燃混合物的模拟燃烧室中进行了实验,以研究基于火花塞的诊断方法在确定点火时在火花点火(SI)发动机的火花塞间隙中进行燃料/空气比诊断的可行性。在实验过程中,测量了击穿电压(V {dollar} rmsb {lcub} s {rcub} {dollar})和火花光发射,以与混合气体的特性相关。使用模拟燃烧室而不是实际发动机来更好地控制混合物成分和其他实验参数。 V {dollar} rmsb {lcub} s {rcub} {dollar}对压力,温度,气体成分和气隙尺寸的依赖性通过测量V {dollar} rmsb的真实值来测试研究了{lcub} s {rcub} {dollar}以及实验结果与帕申定律之间的一致性。此外,还测试了V {dolrm} rmsb {lcub} s {rcub} {dollar}与燃料-空气当量比({dollar} phi {dollar})之间的相关性,以及残余气体分数(RGF)在可燃混合物中。在火花光强度的测量中,研究了相对强度(通过发射或宽带强度归一化的特定分子的光谱强度),以减少火花起始方向变化的影响。经测试,CN自由基在385 nm处的相对强度与火花自由基在其他5个自由基(例如CH和NH)上相比,具有最强的强度,强度在火花点火后5 {μs。还发现CN的相对强度对{phi}和{rgf}有很大的依赖性。对基于火花塞的诊断方法的研究为确定点火时火花塞间隙中的混合物成分提供了一种可行的方法。

著录项

  • 作者

    Han, Yongping.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Mechanical.; Engineering Automotive.
  • 学位 M.A.Sc.
  • 年度 1998
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;自动化技术及设备;
  • 关键词

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