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首页> 外文期刊>Energy Conversion & Management >Experimental study of the injection conditions influence over n-dodecane and diesel sprays with two ECN single-hole nozzles. Part II: Reactive atmosphere
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Experimental study of the injection conditions influence over n-dodecane and diesel sprays with two ECN single-hole nozzles. Part II: Reactive atmosphere

机译:两个ECN单孔喷嘴对正十二烷和柴油喷雾的喷射条件影响的实验研究。第二部分:反应气氛

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The second part of this experimental analysis, presented in this paper, seeks to go deep on the characterization of the Spray C and Spray D nozzles from the Engine Combustion Network, investigating the penetration of fuel spray at reacting conditions alongside characteristic parameters of combustion such as ignition delay and lift-off length. Both ECN mono-orifice injectors have similar nozzle flow capacity but different conicity degrees and corner sharpness, being Spray C more susceptible to cavitate. Schlieren imaging technique was employed to quantitatively measure reactive penetration and ignition delay, while lift-off length was identified through OH* chemiluminescence. As in the inert part of this research, n-dodecane and commercial diesel were selected for the tests, thereby the effect of the fuel properties in the measured parameters was analyzed. Also, once again the concept of R-parameter, defined as the penetration derivative respect to the square root of time was calculated to delve into the penetration behavior. The experiments were performed in a constant pressure-flow facility able to reproduce engine-like thermodynamic conditions. Results revealed that R-parameter evolution can be divided in four stages: an inert zone, a 'bump', a 'valley' part and a quasi-steady one that overlaps the previous inert part. Those stages are highly governed by ambient temperature and oxygen concentration. Nozzle geometry and fuel properties demonstrated to have a noteworthy influence on all measured parameters. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍的该实验分析的第二部分,旨在深入研究发动机燃烧网络中喷雾C和喷雾D喷嘴的特性,研究在反应条件下燃料喷雾的渗透以及诸如燃烧等特征参数。点火延迟和升起长度。两种ECN单孔喷嘴都具有相似的喷嘴流量,但锥度和角锐度不同,因此喷雾C更易发生气蚀。采用Schlieren成像技术定量测量反应性渗透和点火延迟,同时通过OH *化学发光确定剥离长度。与本研究的惰性部分一样,选择正十二烷和商用柴油进行测试,从而分析了燃料性能对测量参数的影响。同样,再次计算了R参数的概念,定义为相对于时间平方根的渗透导数,以探究渗透行为。实验是在恒定压力流量的设备中进行的,该设备能够再现类似于发动机的热力学条件。结果表明,R参数的演化可以分为四个阶段:惰性区域,“凸点”,“谷”部分和与先前惰性部分重叠的准稳态区域。这些阶段在很大程度上取决于环境温度和氧气浓度。喷嘴的几何形状和燃料特性对所有测量参数都有显着影响。 (C)2016 Elsevier Ltd.保留所有权利。

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