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WU Xue-song, DENG Guang-zhe. Experimental Study on the Coal Permeability[J]. Safety in Coal Mines, 2013, 44(6): 1-4.
Citation: WU Xue-song, DENG Guang-zhe. Experimental Study on the Coal Permeability[J]. Safety in Coal Mines, 2013, 44(6): 1-4.

Experimental Study on the Coal Permeability

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  • Published Date: June 19, 2013
  • According to the influence of the water pressure on the coal permeability, it used relative permeability coefficient as the main reference quantity, then it used the experimental method to study permeability coefficient of the coal and the relationship between axial stress and water pressure H under different water pressures. The experimental results showed that in the low-pressure water injection process of hydrostatic pressure, the permeability coefficients of various coal samples were smaller and coal seam water injection H pressure had a significant impact on coal water injection permeability ; In the continuous loading process of the water injection pressure H from the low to the high pressure, the permeability coefficients of coal samples presented increasing trend, the axial pressure of coal samples decreased, and there was a critical injection pressure Hc; When the coal destruction happened, the critical water pressure Hc was greater than the axial confining pressure, tensile failure of the specimen came out, and the phenomenon of crack propagation conduction draining occurred; Index function and polynomial function , taking water pressure H as the basic variable, had better fitting to the changes of permeability coefficient and axial stress.
  • [1]
    邓广哲.急倾斜煤层顶煤弱化技术研究报告[R].西安:西安科技大学,2010.
    [2]
    孙守山,宁宇,葛钧.波兰煤矿坚硬顶板定向水力压裂技术[J].煤炭科学技术,1999,27(2):51-52.
    [3]
    黄炳香,邓广哲,刘长友.煤岩体水力致裂弱化技术及其进展[J].中国工程科学,2007,9(4):83-87.
    [4]
    王青松,金龙哲,孙金华.煤层注水过程分析和煤体润湿机理研究[J].安全与环境学报,2004,4(1):70-74.
    [5]
    黄炳香.煤岩体水力致裂弱化的理论与应用研究[D].徐州:中国矿业大学,2009:2-5.
    [6]
    邓广哲,黄炳香,石增武,等.节理脆性煤层水力致裂技术与应用[C]//中国岩石力学与工程学会第七次学术大会论文集.北京:中国科学技术出版社,2002:636-638.
    [7]
    黄涛.裂隙岩体渗流-应力-温度耦合作用研究[J].岩土力学与工程学报,2002,21(1):77-82.
    [8]
    彭苏萍,孟召平.不同围压下砂岩孔渗规律试验研究[J].岩土力学与工程学报,2003,22(5):742-746.
    [9]
    李文璞,王孟来,唐强.不同应力组合条件下煤岩渗透率的试验[J].现代矿业,2011(3):16-19.
    [10]
    王登科,刘建,尹光志,等. 突出危险煤渗透性变化的影响因素探讨[J].岩土力学,2010,31(11):3469-3474.
    [11]
    胡耀青,赵阳升,魏锦平,等.三维应力作用下煤体瓦斯渗透规律实验研究[J].西安矿业学院学报,1996,16(4): 308-311.
    [12]
    林柏泉,周世宁.煤样瓦斯渗透率的实验研究[J].中国矿业学院学报,1987(1): 21-28.
    [13]
    杨永杰,楚俊,郇冬至.煤岩固液耦合应变-渗透率试验[J].煤炭学报,2008,33(7): 760-764.
    [14]
    彭永伟,齐庆新,邓志刚,等.考虑尺度效应的煤样渗透率对围压敏感性试验研究[J].煤炭学报,2008,33(5): 509-513.
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