西安交通大学动力工程多相流国家重点实验室,西安,710049
网络首发:2010-01-10,
纸质出版:2010
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张英佳 1, 黄佐华 1, 王金华 1, 等. 利用激波管实验装置研究丙烯/氧气/氮气混合气着火滞燃期[J]. 西安交通大学学报, 2010,44(1):9-12+35.
Study on the Ignition Delay Times of Propene/Oxygen/Nitrogen Mixtures by Using Shock Tube[J]. 2010, 44(1): 9-12+35.
利用双膜化学激波管实验装置反射激波方法测量了丙烯/氧气/氮气混合气在温度范围为1 650~1 900 K、压力为0.1 MPa下的着火滞燃期.通过对理想激波管内流动状态分析
给出了合适的着火滞燃期定义.实验结果表明:随着初始温度的增加
丙烯/氧气/氮气混合气着火滞燃期缩短
着火滞燃期的对数与温度的倒数成正比
入射激波强度与着火滞燃期的对数成反比; 高温条件下
混合气的着火滞燃期随着初始压力的增加而增加
随浓度的增加而缩短; 利用多元线性回归方法拟合了C
3
H
6
着火滞燃期的Arrhenius型关系式
计算结果与文献中的实验数据具有很好的吻合性.
Ignition delay times were measured for propene/oxygen/nitrogen mixtures behind reflected shock waves in a double diaphragm chemical shock tube in the range of 1 650-1 900 K and at 0.1 MPa. An appropriate definition of ignition delay time was proposed based on an analysis of the flow condition in an ideal shock tube. The experiment results show that the ignition delay times of the mixtures decreased with the increase in initial temperature. The logarithmic value of the ignition delay times was proportional to the reciprocal of temperature and inversely proportional to incident shock intensity. Under high temperature conditions
the ignition delay times increased with the increase in initial pressure and decreased with the increase in the concentration of propene in the mixtures. An Arrhenius-type correlation equation for the ignition delay time of propene/oxygen/nitrogen mixtures was developed
and its calculation results agree well with the data in literature.
QIN Z W, YANG H X, WILLIAM C, et al. Measurement and modeling of a shock tube ignition delay for propene [J]. Combustion and Flame, 2001, 124(1/2):246-254.
GAUTHIER B M, DAVIDSON D F, HANSON R K. Shock tube determination of ignition delay times in full blend and surrogate fuel mixtures [J]. Combustion and Flame, 2004, 139(4):300-311.
FLEWEGER K, BLUMENTHAL R,ADOMEIT G. Self ignition of S I engine model fuels: shock tube investigation at high pressure [J]. Combustion and Flame, 1997, 109(4):599-619.
LAMOUREUX N, PAILLARD C E, VASLIER V. Low hydrocarbon mixtures ignition delay times investigation behind reflected shock waves [J]. Shock Waves,2002, 11(4):309-322.
王苏,范秉诚,何宇中,等. 硅烷对JP10和煤油点火特性影响的激波管研究[J]. 力学学报,2007,39(4):254-257.
WANG Su, FAN Bingcheng, HE Yuzhong, et al. Effect of silane on ignition characteristics of JP 10 and kerosene as shown in shock tube study[J]. Chinese Journal of Theoretical and Applied Mechanics, 2007, 39(4):254-257.
王高峰,马成飚,王宝源,等. 激波诱导甲烷点火化学反应区的可视化实验研究[J]. 科学通报,2008, 53(19):2371-2378.
WANG Gaofeng, MA Chengbiao, WANG Baoyuan, et al. Direct observations of reaction zone structure in shock-induced ignition of methane air mixture[J]. Chinese Science Bulletin, 2008, 53(19):2317-2378.
DAVIDSON D F, HAYLETT D R, HANSON R K. Development of an aerosol shock tube for kinetic studies of low-vapor-pressure fuels [J]. Combustion and Flame, 2008, 155(1/2):108-117.
DAVIDSON D F, OEHLSCHLAEGER M A, HERBON J T, et al. Shock tube measurements of iso-octane ignition times and OH concentration time histories[J]. Proceedings of Combustion Institute, 2002, 29:1295-1301.
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