范鹏宏, 聂百胜. 采动力学特征下含瓦斯煤渗流实验研究[J]. 煤矿安全, 2017, 48(8): 1-4.
    引用本文: 范鹏宏, 聂百胜. 采动力学特征下含瓦斯煤渗流实验研究[J]. 煤矿安全, 2017, 48(8): 1-4.
    FAN Penghong, NIE Baisheng. Seepage Experimental Study on Coal Containing Gas Under Mining-induced Mechanical Characteristics[J]. Safety in Coal Mines, 2017, 48(8): 1-4.
    Citation: FAN Penghong, NIE Baisheng. Seepage Experimental Study on Coal Containing Gas Under Mining-induced Mechanical Characteristics[J]. Safety in Coal Mines, 2017, 48(8): 1-4.

    采动力学特征下含瓦斯煤渗流实验研究

    Seepage Experimental Study on Coal Containing Gas Under Mining-induced Mechanical Characteristics

    • 摘要: 为研究采动应力对煤体渗透率的影响,采用渗流实验和理论分析的方法,对2个矿的2组煤样在2种采动应力下的渗流特性进行了研究,并揭示了渗透率变化规律。结果表明:2种采动应力下渗透率整体变化规律相似,但各阶段渗透特性不同;在准静水压力阶段,渗透率都随应力增加而下降,保护层采动应力下的渗透率总体大于放顶煤;在第二加卸载阶段,放顶煤采动应力下渗透率呈现缓慢上升,水平应力卸载对渗透性系数影响起主要作用,而保护层采动应力下是阶段末期才开始上升;2种采动应力下渗透率呈现低速增长、增长和高速增长阶段,特别在工作面应力峰值点后,进行抽采效果较理想。

       

      Abstract: To study the mining-induced mechanical characteristics influence on the permeability of coal, seepage experiment and theoretical analysis are adopted. The permeability experiments of two groups of coal samples from two mines are implemented to reveal the permeability variation regularity under two mining stress distribution. The results are shown as follows: the curve of permeability has the similar change under two mining stress distribution, but the characteristics of permeability are different under the different phases of paths;in the process of quasi-hydrostatic pressure, the permeability under two mining stress distribution decreases with the increasing of initial axial force. On the whole, the permeability under protective coal mining stress distribution is higher than that under top-coal mining stress distribution. In the second loading and unloading phase, the permeability shows a slow upward trend under top-coal mining stress distribution, the unloading confining pressure plays a dominant role on the change of permeability coefficient of coal, but the permeability under protective coal mining stress distribution begins to increase at the end of loading and unloading process;the coal permeability distribution can be divided into slow increase stage, growth stage and rapid increase stage in the forward process of working face. The effect of gas drainage is more ideal, especially after the peak stress points near the working face.

       

    /

    返回文章
    返回