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Field test research on gas migration law of mining coal and rock

机译:煤矿岩体瓦斯运移规律的现场试验研究

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The fractures in coal and rock mass are the main channels of gas seepage, and understanding the gas migration law during mining is the precondition of gas control. The long-term in-situ monitoring of the abutment pressure, fracture networks and gas-flow in front of a mining face was carried out and the 1-D connectivity ratio of boreholes were calculated. The results showed that under the influence of mining, the fracture networks developed to the depth of rock stratum, and as far-field gas seepage channels, far-field gas continuously supplied the near-field gas. The gas flow in front of the mining face have undergone two stages of evolution from initial value to peak value, and then to a stable value. The 1-D connectivity ratio the abutment pressure about 5 to 10 m. The 1-D connectivity ratio reflected the dergree of coal and rock fracture penetration caused by mining, and the area with the highest gas extraction efficiency was the transition zone from peak abutment pressure to residual pressure in coal seams.
机译:煤岩岩体中的裂缝是瓦斯渗漏的主要途径,了解采矿过程中的瓦斯运移规律是瓦斯治理的前提。进行了采煤工作面前方的基台压力,裂缝网络和气流的长期原位监测,并计算了钻孔的一维连通率。结果表明,在开采的影响下,裂缝网络扩展至岩层深度,作为远场瓦斯渗漏通道,远场瓦斯连续供应近场瓦斯。采煤工作面前方的气流经历了从初始值到峰值再到稳定值的两个演化阶段。一维连接比的基台压力约为5至10 m。一维连通率反映了采矿引起的煤和岩石裂缝渗透的程度,而瓦斯抽采效率最高的区域是煤层从顶峰压力到残余压力的过渡带。

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