王公忠, 孙光中. 孔隙率对构造煤瓦斯渗透性影响关系的实验研究[J]. 煤矿安全, 2015, 46(7): 1-4.
    引用本文: 王公忠, 孙光中. 孔隙率对构造煤瓦斯渗透性影响关系的实验研究[J]. 煤矿安全, 2015, 46(7): 1-4.
    WANG Gongzhong, SUN Guangzhong. Experimental Research on Influence of Porosity on Tectonic Coal Gas Permeability[J]. Safety in Coal Mines, 2015, 46(7): 1-4.
    Citation: WANG Gongzhong, SUN Guangzhong. Experimental Research on Influence of Porosity on Tectonic Coal Gas Permeability[J]. Safety in Coal Mines, 2015, 46(7): 1-4.

    孔隙率对构造煤瓦斯渗透性影响关系的实验研究

    Experimental Research on Influence of Porosity on Tectonic Coal Gas Permeability

    • 摘要: 以孔隙率不同的构造煤原煤煤样为研究对象,利用三轴应力渗流装置进行了瓦斯渗透性实验,结果表明,在恒温条件下,构造煤的瓦斯渗透性随着煤体孔隙率的增加而增大,并且渗透率K0与孔隙率σ之间呈现二次函数关系,即K0=ασ2+βσ+δ;温度恒定时,构造煤的瓦斯渗透性随平均有效应力的增加而逐渐减小,且孔隙率较大的构造煤的渗透率变化幅度较大;平均有效应力不变时,同一孔隙率的构造煤随着温度的增加,瓦斯渗透率降低,且孔隙率对构造煤瓦斯渗透率的影响比温度对构造煤瓦斯渗透率的影响明显。

       

      Abstract: Taking raw coal samples of tectonic coal that porosity is different as the research objects, using three axis stress seepage device to carry out the gas permeability experiments, the results show that the gas permeability of tectonic coal increases with the porosity of coal under the condition of constant temperature, and presents the quadratic function relationship between the permeability K0 and the porosity σ, which is K0=ασ2+βσ+δ. When the temperature is constant, the gas permeability of tectonic coal decreases gradually with the increase of mean effective stress, and the permeability of large-porosity tectonic coal has large amplitude of change. Under the condition of the constant mean effective stress, the permeability of tectonic coal with the same porosity decreases with temperature increasing, and the effect of porosity on the gas permeability of tectonic coal is more obvious than temperature.

       

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