An experimental investigation of flame lift-off length and soot luminosity of the emulsified diesel under various ambient temperatures

Ming Huo, Karthik Nithyanandan, Chia Fon F. Lee*, Nan Zhou, Han Wu

*此作品的通讯作者

科研成果: 书/报告/会议事项章节会议稿件同行评审

1 引用 (Scopus)

摘要

The emulsified fuel remains attractive due to its potential capability of reducing the NOx and particular matter (PM) at the same time. In this work, the emulsified diesel, with the amount of water quantities ranged between 10% and 20% by volume, was injected and combusted in an optical constant volume chamber. With controlled combustion of acetylene mixture prior to the fuel injection, the chamber is able to provide high ambient temperature and pressure to mimic the real engine operation. In this study, ambient temperatures ranging from 800K to 1200K were investigated. Mie scattering images, at 15000 fps, were first taken to record the evolution of the spray using a Phantom 7.1 high speed camera coupled with a copper vapor laser as the light source. The spray images revealed longer liquid penetration and wider cone angle at the beginning stage of the injection event for emulsified fuel, supporting the occurrence of micro-explosion. Ambient temperature played an important role in the dynamic behavior of soot lift-off length as low ambient temperature features a long initial soot lift-off length and sharp decrease afterwards for both fuels while high ambient temperature enables the soot lift-off to achieve quasisteady state immediately after the onset of the fuel injection. The broadband luminosity results indicate the advantage of using emulsified fuel to suppress soot formation, and this benefit can be maximized if coupled with a low temperature combustion strategy.

源语言英语
主期刊名Fuels; Numerical Simulation; Engine Design, Lubrication, and Applications
出版商American Society of Mechanical Engineers (ASME)
ISBN(印刷版)9780791856109
DOI
出版状态已出版 - 2013
已对外发布
活动ASME 2013 Internal Combustion Engine Division Fall Technical Conference, ICEF 2013 - Dearborn, MI, 美国
期限: 13 10月 201316 10月 2013

出版系列

姓名ASME 2013 Internal Combustion Engine Division Fall Technical Conference, ICEF 2013
2

会议

会议ASME 2013 Internal Combustion Engine Division Fall Technical Conference, ICEF 2013
国家/地区美国
Dearborn, MI
时期13/10/1316/10/13

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