Volume 36 Issue 4
Jul.  2016
Turn off MathJax
Article Contents
ZHANG Hai, CHEN Jialun, ZHANG Pei, LIU Bing, ZUO Cheng, QIAO Yu. Current Status and Future Prospects on Microgravity Coal Combustion[J]. Chinese Journal of Space Science, 2016, 36(4): 469-475. doi: 10.11728/cjss2016.04.469
Citation: ZHANG Hai, CHEN Jialun, ZHANG Pei, LIU Bing, ZUO Cheng, QIAO Yu. Current Status and Future Prospects on Microgravity Coal Combustion[J]. Chinese Journal of Space Science, 2016, 36(4): 469-475. doi: 10.11728/cjss2016.04.469

Current Status and Future Prospects on Microgravity Coal Combustion

doi: 10.11728/cjss2016.04.469 cstr: 32142.14.cjss2016.04.469
  • Received Date: 2015-11-10
  • Rev Recd Date: 2016-04-12
  • Publish Date: 2016-07-15
  • Microgravity environment minimizes the buoyancy effect that the coal particles suffer during the combustion under normal gravity, and thus provides an ideal environment to discover new phenomena and obtain more accurate data. The results are useful to explore the basic combustion principles and the strength of the buoyancy effect on coal combustion, and to validate and develop coal combustion models for the ground coal utilization. The characteristics of coal ignition and combustion are the theoretical foundation for highly efficient and clean utilization of coal resources. This paper reviews the latest status and comments on the future prospects of the researches on microgravity coal combustion. The experimental system carried on SJ-10 satellite is also briefly introduced.

     

  • loading
  • [1]
    BHANDYOPADYAY S, BHADURI B D. Prediction of ignition temperature of single coal particle[J]. Combust. Flame, 1972, 18(3):411-415
    [2]
    TOGNOTTI L, MALOTTI A, PETARCA L, et al. Measurement of ignition temperature of coal particles using a thermogravimetric technique[J]. Combust. Sci. Technol., 1985, 44(1):15-28
    [3]
    ESSENHIGH R H, MISRA M K, SHAW D W. Ignition of coal particles: a review[J]. Combust. Flame, 1989, 77(1): 3-30
    [4]
    DU X, ANNAMALAI K. The transient ignition of isolated coal particle[J]. Combust. Flame, 1994, 97:339-436
    [5]
    GURURAJAN V S, WALL T F, GUPTA R P, et al. Mechanisms for the ignition of pulverized coal particles[J]. Combust. Flame, 1990, 81(2):119-132
    [6]
    FU Weibiao. Coal Combustion Theory and General Rules[M]. Beijing: Tsinghua University Press, 2003(傅维镳. 煤燃烧理论及其宏观通用规律[M]. 北京: 清华大学出版社, 2003)
    [7]
    ZHANG D K, WALL T F. Ignition of coal particles: the influence of experimental technique[J]. Fuel, 1994, 73(7):1114-1119
    [8]
    SU S, POHL J H, HOLCOMBE D, et al. Techniques to determine ignition, flame stability and burnout of blended coals in p.f. power station boilers[J]. Progr. Energy Combust. Sci., 2001, 27(1):75-98
    [9]
    LIU B, ZHANG Z Z, ZHANG H, et al. An experimental investigation on the effect of convection on the ignition behaviour of single coal particles under various O2 concentrations[J]. Fuel, 2014, 116:77-83
    [10]
    KATALAMBULA H, HAYASHI J, CHIBA T, IKEDA K, KITANO K. Mechanism of single coal particle ignition under microgravity condition[J]. J Chem. Eng. Jpn., 1997, 30(1):146-153
    [11]
    KATALAMBULA H, HAYASHI J I, CHIBA T. Dependence of single coal particle ignition mechanism on the surrounding volatile matter cloud[J]. Energy Fuels, 1997, 11:1033-1039
    [12]
    TANG G T, ZHANG H, ZHU M M. et al. Experimental study on the ignition process of single coal particles at microgravity[J]. Microgravity Sci. Technol., 2010, 22:27-35
    [13]
    ZHU M M, ZHANG H, TANG G T, et al. Ignition of single coal particle in a hot furnace under normal and micro-gravity condition[J]. Proc. Combust. Inst., 2009, 32:2029-2035
    [14]
    ZHANG Xia. Research Advances on microgravity combustion[J]. Adv. Mech., 2004, 34(4):507-528(张夏. 微重力燃烧研究进展[J]. 力学进展, 2004, 34(4):507-528)
    [15]
    KONG Wenjun, ZHANG Xiaoqian. Opportunities and progress of research on combustion in microgravity[J]. J. Combust. Sci. Technol., 1997, 3(4):424-436(孔文俊, 张孝谦. 微重力下燃烧科学研究的机遇与进展[J]. 燃烧科学与技术, 1997, 3(4):424-436)
    [16]
    RONNEY P D. Understanding combustion processed through microgravity research[J]. Proc. Combust. Inst., 1998, 27(2):2485-2506
    [17]
    KONO M, ITO K, NⅡOKA T, KADOTA T, SATO J I. Current state of combustion research in microgravity[J]. Proc. Combust. Inst., 1996, 26:1189-1199
    [18]
    GIERAS M, KLEMENS R, WOJCICKI S. Ignition and combustion of coal particles at zero gravity[J]. Acta Astron., 1985, 12(7/8):573-579
    [19]
    GIERAS M, KLEMENS R, WOLA?SKI P. Experimental and theoretical study of ignition of single coal particles at zero gravity[J]. Acta Astron., 1986, 13(5):231-239
    [20]
    WENDT C, IKEDA I M, KATALAMBULA H, KITANO K, EIGENBROD C, RATH H J. Dependence of single coal particle homogeneous ignition on particle shape under microgravity[J]. Microgravity Sci. Technol., 1999, 12(2):51-55
    [21]
    KIGA T, TAKANO S, KIMURA N, OMATA K, OKAWA M, MORI T, KATO M. Characteristics of pulverized-coal combustion in the system of oxygen/recycled flue gas combustion[J]. Energy Conv. Manag., 1997, 38:S129-S134
    [22]
    FUJITA O, ITO K, TAGASHIRA T, SATO J. Flame propagation in coal dust cloud under microgravity environment[J]. Proc. Intern. Symp. Aerospace Fluid Sci., 1993:274-281
    [23]
    ITO K, FUJITA O, TAGASHIRA T, SAKAMOTO A, SATO J. Utilization of 10 seconds microgravity environment for the measurement of coal dust flame propagation speeds[C]//Proceedings of Drop Tower Days Workshops, 1994:115-119
    [24]
    SUDA T, MASUKO K, SATO J, et al. Effect of carbon dioxide on flame propagation of pulverized coal clouds in CO2/O2 combustion[J]. Fuel, 2007, 86(12):2008-2015
    [25]
    ZHANG Xiaoqian, WEI Minggang. Microgravity drop tower[J]. J. Eng. Thermophys., 1995, 16(4):503-506(张孝谦, 韦明罡. 微重力燃烧研究用落塔[J]. 工程热物理学报, 1995, 16(4):503-506)
    [26]
    ZHANG Xiaoqian, YUAN Longgen, WU Wendong, et al. The key technology of NMLC drop tower[J]. Sci China: E., 2005, 35(5):523-534(张孝谦, 袁龙根, 吴文东, 等. 国家微重力实验室百米落塔实验设施的几项关键技术[J]. 中国科学: E, 2005, 35(5):523-534
    [27]
    ZHU M, ZHANG H, ZHANG Z, et al. A numerical modeling study of ignition of single coal particles under microgravity conditions[J]. Combust. Sci. Technol., 2011, 183(11):1221-1235
    [28]
    LIU B, ZHANG Z Z, ZHANG H, ZHANG D K. Volatile release and ignition behaviors of single coal particles at different oxygen concentrations under microgravity[J]. Microgravity Sci. Technol., 2015:1-8
    [29]
    HU W R, ZHAO J F, LONG M, et al. Space program SJ-10 of microgravity research[J]. Microgravity Sci. Technol., 2014, 26(3):159-169
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article Views(1877) PDF Downloads(833) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return