郭平. 瓦斯压力对煤体吸附-解吸变形特征影响试验研究[J]. 煤矿安全, 2019, 50(9): 13-16.
    引用本文: 郭平. 瓦斯压力对煤体吸附-解吸变形特征影响试验研究[J]. 煤矿安全, 2019, 50(9): 13-16.
    GUO Ping. Experimental Study on Influence of Gas Pressure on Coal Adsorption/Desorption Deformation Characteristics[J]. Safety in Coal Mines, 2019, 50(9): 13-16.
    Citation: GUO Ping. Experimental Study on Influence of Gas Pressure on Coal Adsorption/Desorption Deformation Characteristics[J]. Safety in Coal Mines, 2019, 50(9): 13-16.

    瓦斯压力对煤体吸附-解吸变形特征影响试验研究

    Experimental Study on Influence of Gas Pressure on Coal Adsorption/Desorption Deformation Characteristics

    • 摘要: 以松藻煤电公司渝阳煤矿8#突出煤层原煤试样为研究对象,开展了不同瓦斯压力条件下的煤体吸附-解吸变形试验。研究结果表明:含瓦斯煤体吸附-解吸变形动态曲线可划分为抽真空压缩变形阶段I、吸附膨胀变形阶段II、解吸收缩变形阶段III等3个阶段;煤体的吸附-解吸变形具有明显的各向异性特征,但横纵向变形量比值随时间和压力变化不明显,趋于定值;含瓦斯煤体体积变形随吸附/解吸压力的增大呈线性增加,吸附/解吸时间越长,线性斜率越大;含瓦斯煤体吸附-解吸变形不可逆,残余变形量随气体压力增加而增大,且纵向变形对煤体残余体积变形贡献相对较大。

       

      Abstract: Based on 8# coal seam of coal core samples of Yuyang Coal Mine of Songzao Coal and Power Company, the experiments of coal adsorption-desorption deformation were carried out under different gas pressures. The test result indicated that: the adsorption-desorption deformation dynamic curve of coal containing gas could be divided into vacuum compression deformation stage I, adsorption swelling deformation stage II, and desorbed shrinkage deformation stage III; the adsorption-desorption deformation of coal had obvious anisotropic characteristics. The ratios of horizontal and vertical deformation did not change significantly with time and pressure, and it tended to be constant;the volumetric deformation of coal containing gas increased linearly with the increase of adsorption/desorption pressure. At the same time, the longer the adsorption/desorption time, the greater the linear slope; the adsorption-desorption deformation was irreversible. The residual deformation increases with the gas pressure, and the vertical deformation provided more contribution to residual volume deformation.

       

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