王公忠, 孙光中. 负压条件下构造煤原煤样瓦斯渗透性实验[J]. 煤矿安全, 2015, 46(10): 11-14.
    引用本文: 王公忠, 孙光中. 负压条件下构造煤原煤样瓦斯渗透性实验[J]. 煤矿安全, 2015, 46(10): 11-14.
    WANG Gongzhong, SUN Guangzhong. Gas Permeability Experiment for Raw Samples of Tectonic Coal Under the Condition of Negative Pressure[J]. Safety in Coal Mines, 2015, 46(10): 11-14.
    Citation: WANG Gongzhong, SUN Guangzhong. Gas Permeability Experiment for Raw Samples of Tectonic Coal Under the Condition of Negative Pressure[J]. Safety in Coal Mines, 2015, 46(10): 11-14.

    负压条件下构造煤原煤样瓦斯渗透性实验

    Gas Permeability Experiment for Raw Samples of Tectonic Coal Under the Condition of Negative Pressure

    • 摘要: 利用三轴应力渗流实验装置对坚固性系数为0.3的构造煤原煤煤样进行了加压破坏以及负压条件下含瓦斯构造煤原煤煤样的瓦斯渗透性实验研究。结果表明,坚固性系数为0.3的构造煤原煤样的压裂过程经历了非线性压密阶段、线弹性阶段、应变强化阶段、应力跌落阶段和应变软化阶段等5个阶段。在围压、瓦斯压力一定,同一轴压条件下,加载负压时的煤体瓦斯渗透率要大于不加载负压时的煤体瓦斯渗透率,随着负压增大瓦斯渗透率随之增大。在围压、瓦斯压力一定,同一负压条件下,随着轴压的增大,瓦斯渗透率先逐渐增大到一定峰值后逐渐减小。在围压、负压一定,同一轴压条件下,瓦斯压力越大,煤体的瓦斯渗透率越小。在围压、负压、瓦斯压力一定的条件下,轴压加载到σo值后,开始卸载轴压,随着轴压的卸载煤体瓦斯渗透率逐渐增大,在轴压卸载的初始阶段,渗透率增幅较大;随后在轴压卸载完全的过程中,渗透率的增幅越来越不明显,并且轴压卸载为0时的渗透率要小于煤样试件在加载轴压前的初始渗透率。

       

      Abstract: We use triaxial stress seepage experiment device to carry out the pressure damage experiments and the experiments of gas permeability of the raw coal sample of tectonic coal which the consistence coefficient is 0.3 under the condition of negative pressure. The results showed that it also goes through the nonlinear compressive stage, elastic stage, strain hardening stage, the stress drop stage and strain softening stage 5 stages. Under the conditions of the confining pressure and the gas pressure steady, the same axial pressure,the coal gas permeability in loading negative pressure is larger than that not loading negative pressure; gas permeability increases with negative pressure increasing. Under the conditions of the confining pressure and the gas pressure steady, the same negative pressure, with the axial pressure increasing, the gas permeability gradually increases to a certain peak then gradually decreasing. Under the conditions of the confining pressure, the negative pressure, and the pressure of gas steady, axial compression loading to σ0 , begin to unload the axial compression, with the axial compression gradually unloading the gas permeability gradually increasing, the increasing amplitude of permeability is larger in the initial stage, then the increasing amplitude of permeability is not obvious, when the axial compression unloading to zero, the permeability is smaller than the initial permeability.

       

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