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气体混合物中的激光诱导击穿。正癸烷点火的实验与统计研究:压力、混合物成分及当量比的影响。

Laser induced breakdown in gas mixtures. Experimental and statistical investigation on n-decane ignition: Pressure, mixture composition and equivalence ratio effects.

作者信息

Mokrani Nabil, Gillard Philippe

机构信息

Univ. Orléans, INSA-CVL, Laboratoire PRISME EA 4229, F-18020 Bourges, France.

Univ. Orléans, INSA-CVL, Laboratoire PRISME EA 4229, F-18020 Bourges, France.

出版信息

J Hazard Mater. 2020 Apr 15;388:119266. doi: 10.1016/j.jhazmat.2018.03.046. Epub 2018 Mar 26.

Abstract

This paper presents a physical and statistical approach to laser-induced breakdown in n-decane/N + O mixtures as a function of incident or absorbed energy. A parametric study, with pressure, fuel purity and equivalence ratio, was conducted to determine the incident and absorbed energies involved in producing breakdown, followed or not by ignition. The experiments were performed using a Q-switched Nd-YAG laser (1064 nm) inside a cylindrical 1-l combustion chamber in the range of 1-100 mJ of incident energy. A stochastic study of breakdown and ignition probabilities showed that the mixture composition had a significant effect on ignition with large variation of incident or absorbed energy required to obtain 50% of breakdown. It was observed that the combustion products absorb more energy coming from the laser. The effect of pressure on the ignition probabilities of lean and near stoichiometric mixtures was also investigated. It was found that a high ignition energy E50% is required for lean mixtures at high pressures (3 bar). The present study provides new data obtained on an original experimental setup and the results, close to laboratory-produced laser ignition phenomena, will enhance the understanding of initial conditions on the breakdown or ignition probabilities for different mixtures.

摘要

本文提出了一种物理和统计方法,用于研究在正癸烷/N+O混合物中激光诱导击穿与入射或吸收能量的函数关系。进行了一项参数研究,研究了压力、燃料纯度和当量比,以确定产生击穿(无论是否随后点火)所涉及的入射和吸收能量。实验在一个圆柱形1升燃烧室中使用调Q Nd:YAG激光器(1064nm)进行,入射能量范围为1-100mJ。对击穿和点火概率的随机研究表明,混合物组成对点火有显著影响,获得50%击穿所需的入射或吸收能量变化很大。观察到燃烧产物吸收了更多来自激光的能量。还研究了压力对贫燃和近化学计量比混合物点火概率的影响。发现高压(3巴)下的贫燃混合物需要较高的点火能量E50%。本研究提供了在原始实验装置上获得的新数据,这些结果与实验室产生的激光点火现象相近,将有助于加深对不同混合物击穿或点火概率初始条件的理解。

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