• Acta Photonica Sinica
  • Vol. 42, Issue 9, 1087 (2013)
ZHAO Yan1、*, LI Ping1, ZHANG Chuan-zhao1, ZHANG Chang-hua1, and LI Xiang-yuan2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/gzxb20134209.1087 Cite this Article
    ZHAO Yan, LI Ping, ZHANG Chuan-zhao, ZHANG Chang-hua, LI Xiang-yuan. Properties of Combustion Reaction of n-Dodecane by Transient Emission Spectroscopy[J]. Acta Photonica Sinica, 2013, 42(9): 1087 Copy Citation Text show less
    References

    [1] HUMER S, FRASSOLDATI A, GRANATA S, et al. Experimental and kinetic modeling study of combustion of JP-8, its surrogates and reference components in laminar nonpremixed flows[J]. Proceedings of the Combustion Institute, 2007, 31(1): 393-400.

    [2] MONTGOMERY C J, CANNON S M, MAWID M A, et al. Reduced chemical kinetic mechanisms for JP-8 combustion[R]. AIAA, 2002, 2002-0336.

    [3] WANG H, DAMES E, SIRJEAN B, et al. JetSurF version 2.0, a high-temperature chemical kinetic model of n-alkane (up to n-dodecane), cyclohexane, and methyl-, ethyl-, n-propyl and n-butyl-cyclohexane oxidation at high temperatures, September 19, 2010 (http: //melchior.usc.edu/JetSurF/JetSurF2.0).

    [4] WESTBROOK C K, PITZ W J, HERBINET O, et al. A comprehensive detailed chemical kinetic reaction mechanism for combustion of n-alkane hydrocarbons from n-octane to n-hexadecane[J]. Combustion and Flame, 2009, 156(1): 181-199.

    [5] WANG H, YOU X Q, JOSHI A V, et al. USC mech version ii, high-temperature combustion reaction model of H2/CO/C1-C4 compounds, May, 2007 (http: //ignis.usc.edu/USC_ Mech_II.htm).

    [6] WANG Q D, WANG J B, LI J Q, et al. Reactive molecular dynamics simulation and chemical kinetic modeling of pyrolysis and combustion of n-dodecane[J]. Combustion and Flame, 2011, 158(2): 217-226.

    [7] FANG Ya-mei, WANG Quan-de, WANG Fan, et al. Reduction of the detailed kinetic mechanism for high-temperature combustion of n-dodecane[J]. Acta Physico-Chimica Sinica, 2012, 28(11): 2536-2542.

    [8] VASU S S, DAVIDSON D F, HONG Z, et al. n-Dodecane oxidation at high-pressures: Measurements of ignition delay times and OH concentration time-histories[J]. Proceedings of the Combustion Institute, 2009, 32(1): 173-180.

    [9] MALEWICKI T, BREZINSKY K. Experimental and modeling study on the pyrolysis and oxidation of n-decane and n-dodecane[J]. Proceedings of the Combustion Institute, 2013, 34(1): 361-368.

    [10] HAYLETT D R, DAVIDSON D F, HANSON R K. Ignition delay times of low-vapor-pressure fuels measured using an aerosol shock tube[J]. Combustion and Flame, 2012, 159(2): 552-561.

    [11] HERBINET O, MARQUAIRE P M, FOURNRT R, et al. Thermal decomposition of n-dodecane: Experiments and kinetic modeling[J]. Journal of Analytical and Applied Pyrolysis, 2007, 78(2): 419-429.

    [12] KURMAN M S, NATELSON R H, CERNANSKY N P, et al. Speciation of the reaction intermediates from n-dodecane oxidation in the low temperature regime[J]. Proceedings of the Combustion Institute, 2011, 33(1): 159-166.

    [13] COOKEA J A, BELLUCCIA M, SMOOKEA M D, et al. Computational and experimental study of JP-8, a surrogate, and its components in counterflow diffusion flames[J]. Proceedings of the Combustion Institute, 2005, 30(1): 439-446.

    [14] KUMAR K, SUNG C J. Laminar flame speeds and extinction limits of preheated n-decane/O2/N2 and n-dodecane/O2/N2 mixtures[J]. Combustion and Flame, 2007, 151(1-2): 209-224.

    [15] ZHANG Chang-hua, TANG Hong-chang, ZHANG Chuan-zhao, et al. Diagnosis of iso-octane combustion in a shock tube by emission spectroscopy[J]. Chemical Physics Letters, 2013, 556: 13-17.

    [16] LAMOUREUX N, DESGROUX P, BAKALI A E, et al. Experimental and numerical study of the role of NCN in prompt-NO formationin low-pressure CH4-O2-N2 and C2H2-O2-N2 flames[J]. Combustion and Flame, 2010, 157(10): 1929-1941.

    [17] BROWN D M, SANDVIK P M, FEDISON J B, et al. Determination of lean burn combustion temperature using ultraviolet emission[J]. IEEE Sensors Journal, 2008, 8(3-4): 255-260.

    [18] KOPP M, BROWER M, MATHIEU O, et al. CO2 chemiluminescence study at low and elevated pressures[J]. Applied Physics B, 2012, 107(3): 529-538.

    ZHAO Yan, LI Ping, ZHANG Chuan-zhao, ZHANG Chang-hua, LI Xiang-yuan. Properties of Combustion Reaction of n-Dodecane by Transient Emission Spectroscopy[J]. Acta Photonica Sinica, 2013, 42(9): 1087
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