低稀释度条件下乙烯点火特性的激波管研究
SHOCK TUBE STUDY OF ETHYLENE IGNITION DELAY CHARACTERISTICS AT LOWDILUTION
查看参考文献11篇
文摘
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在激波管中利用反射激波后高温环境加热燃料,以燃料点火过程中氢氧自由基特征发射光谱强度的急剧变化作为点火发生的标志,在温度范围800~1 650K,压力0.2MPa, 0.7MPa, 1.2MPa,化学当量比为0.5, 1, 2, O_2浓度为空气含量20%的条件下,进行了C_2H_4/O_2/Ar 混合气在低稀释度条件下点火特性的实验研究.获得了乙烯点火延时随温度、压力、化学当量比、燃料以及氧化剂浓度等参数变化的拟合关系式.对乙烯点火转爆轰现象进行了初步观察,考察了初始温度对乙烯点火特性以及点火转爆轰的影响. |
其他语种文摘
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Ignition delay characteristics of ethylene/O_2/Ar mixtures have been studied behind reflected shock waves in a shock tube by monitoring the steepest rise of the characteristic emission of OH radical at 306.5 nm. Experiments were conducted with low argon dilution, covering a temperature range of 800~1 650 K, at pressures of 0.2, 0.7 and 1.2MPa, and with equivalence ratios of 0.5, 1 and 2. The oxygen content of the test mixtures was about 20%. The correlation formula of ignition delay dependence on temperature, pressure, equivalence ratios and fuel and oxygen mole fraction was obtained. The transition of ethylene ignition to detonation was observed with different initial temperatures, and the influence of initial temperature on ignition delay characteristics of ethylene was also discussed. |
来源
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力学学报
,2014,46(1):155-159 【核心库】
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DOI
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10.6052/0459-1879-13-027
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关键词
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点火延时
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乙烯
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爆轰
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激波管
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地址
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1.
重庆大学化学化工学院, 高温气体动力学国家重点实验室, 重庆, 400044
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中国科学院力学研究所, 高温气体动力学国家重点实验室, 重庆, 400044
3.
重庆大学化学化工学院, 重庆, 400044
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语种
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中文 |
文献类型
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研究性论文 |
ISSN
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0459-1879 |
学科
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力学 |
基金
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国家自然科学基金资助项目
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文献收藏号
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CSCD:5064209
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参考文献 共
11
共1页
|
1.
Wang H. A detailed kinetic modeling study of aromatics formation in laminar premixed acetylene and ethylene flames.
Combustion and Flame,1997,110:173-221
|
CSCD被引
85
次
|
|
|
|
2.
刘伟雄. 空气污染组分H_2O和CO_2对乙烯燃烧性能的影响.
物理化学学报,2009,25:1618-1622
|
CSCD被引
9
次
|
|
|
|
3.
Varatharajan B. Ethylene ignition and detonation chemistry, Part 1: Detailed modeling and experimental comparison.
Journal of Propulsion and Power,2002,18:344-3514
|
CSCD被引
4
次
|
|
|
|
4.
Brown C J. Experimental studies of shock-induced ignition and transition to detonation in ethylene and propane mixtures.
Combustion and Flame,1999,117:861-870
|
CSCD被引
15
次
|
|
|
|
5.
Suzuki M. Oxidation of ethylene in shock-tube.
Astronautica Acta,1973,18:359-365
|
CSCD被引
6
次
|
|
|
|
6.
Tereza A M. Autoignition of ethylene in shock waves.
Russian Journal of Physical Chemistry B,2010,4:475-485
|
CSCD被引
1
次
|
|
|
|
7.
Saxena S. A shock tube study of ignition delay in the combustion of ethylene.
Combustion and Flame,2011,6:1019-1031
|
CSCD被引
10
次
|
|
|
|
8.
Liang J H. Shock tube study of kerosene ignition delay at high pressures.
Science China-Physics Mechanics Astronomy,2012,55(6):947-954
|
CSCD被引
9
次
|
|
|
|
9.
.
Gaseq Chemical Equilibrium Program. Version 0.79,Computerized Educational Systems,2005
|
CSCD被引
1
次
|
|
|
|
10.
Shen H P. A shock tube study of iso-octane ignition at elevated pressures: The influence of diluent gases.
Combustion and Flame,2008,155:739-755
|
CSCD被引
5
次
|
|
|
|
11.
Horning D C.
A study of the high-temperature autoignition and thermal decomposition of hydrocarbons. [PhD Thesis],2001:87-89
|
CSCD被引
1
次
|
|
|
|
|