Experimental and Theoretical Study of Diffusion Combustion of Methane above a Gas Hydrate Layer in a Laminar Air Flow

被引:1
|
作者
Donskoy, I. G. [1 ]
Misyura, S. Ya [2 ]
机构
[1] Russian Acad Sci, Melentiev Energy Syst Inst, Siberian Branch, Irkutsk 664033, Russia
[2] Russian Acad Sci, Kutateladze Inst Thermophys, Siberian Branch, Novosibirsk 630090, Russia
关键词
gas hydrate; diffusion combustion; phase transitions; EXTINCTION; DISSOCIATION; KINETICS;
D O I
10.1134/S0010508222040062
中图分类号
O414.1 [热力学];
学科分类号
摘要
The fraction of methane in gas hydrates is approximately 12% (by weight). Theoretically, the combustion temperature of such a composition is rather low. Nevertheless, the measurements show that a much higher flame temperature can be ensured by organizing the process more appropriately. For this purpose, it is necessary to separate the dissociation and combustion regions (i.e., eliminate water heating). On the other hand, for combustion to be stable, some part of the combustion heat should be returned to the hydrate region to maintain the dissociation rate at a needed level. Stability of methane hydrate combustion is naturally determined by the ratio of heat release and heat transfer. This paper describes experiments on methane combustion above a layer of a dissociating gas hydrate, and a simple mathematical model is proposed for estimating diffusion combustion stability. Comparing the modeling results with experimental data allows one to determine the water vapor concentration and find the thermal balance of hydrate combustion.
引用
收藏
页码:440 / 449
页数:10
相关论文
共 50 条
  • [21] Experimental Study of the Process of Dissociation of Methane Hydrate Accompanied by Its Combustion
    Elistratov, D. S.
    Elistratov, S. L.
    Chernov, A. A.
    JOURNAL OF ENGINEERING THERMOPHYSICS, 2024, 33 (01) : 21 - 28
  • [22] Experimental study on the effect of airflow conditions on the combustion characteristics of methane hydrate
    Cui, Gan
    Dong, Zengrui
    Xie, Kai
    Wang, Shun
    Guo, Tao
    Liu, Jianguo
    Xing, Xiao
    Li, Zili
    FUEL, 2021, 300
  • [23] Experimental study of fractal characteristic of methane/air combustion
    Yang, Y
    He, XQ
    Zhou, TL
    Sa, ZY
    Mining Science and Technology, 2004, : 169 - 172
  • [24] An experimental study on premixed laminar and turbulent combustion of synthesized coalbed methane
    Zheng, Shizhuo
    Zhang, Xin
    Wang, Tao
    Liu, Jie
    ENERGY, 2015, 92 : 355 - 364
  • [25] Experimental study of characteristics of a laminar boundary layer with hydrogen combustion
    E. P. Volchkov
    V. V. Lukashov
    Combustion, Explosion, and Shock Waves, 2012, 48 : 375 - 381
  • [26] Experimental study of characteristics of a laminar boundary layer with hydrogen combustion
    Volchkov, E. P.
    Lukashov, V. V.
    COMBUSTION EXPLOSION AND SHOCK WAVES, 2012, 48 (04) : 375 - 381
  • [27] Experimental Study of Methane Replacement in Gas Hydrate by Carbon Dioxide
    Voronov, V. P.
    Gorodetskii, E. E.
    Muratov, A. R.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2010, 114 (38): : 12314 - 12318
  • [28] Experimental observation and numerical modelling of a laminar double coflow methane/air diffusion flame
    Liu, Fengshan
    Kong, Wenjun
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION 2007, VOL 6: ENERGY SYSTEMS: ANALYSIS, THERMODYNAMICS AND SUSTAINABILITY, 2008, : 761 - 768
  • [29] Experimental and theoretical study of nitrogen-oxide formation in combustion of homogeneous methane-air mixture
    Kashapov, RS
    Maksimov, DA
    Skiba, DB
    IZVESTIYA VYSSHIKH UCHEBNYKH ZAVEDENII AVIATSIONAYA TEKHNIKA, 1999, (04): : 55 - 57
  • [30] Effects of pressure and fuel dilution on coflow laminar methane-air diffusion flames: Acomputational and experimental study
    Cao, Su
    Ma, Bin
    Giassi, Davide
    Bennett, Beth Anne V.
    Long, Marshall B.
    Smooke, Mitchell D.
    COMBUSTION THEORY AND MODELLING, 2018, 22 (02) : 316 - 337