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Influence of Deformation and Instability of Borehole on Gas Extraction in Deep Mining Soft Coal Seam

机译:钻孔变形与不稳定性对深矿井软煤层气体萃取的影响

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摘要

To study the effects of the three deformation instability modes of gas drainage borehole on gas drainage, the deformation instability mechanism of soft coal seams is analyzed, three deformation instability modes are proposed for soft coal seams, namely, complete holes, collapse holes, and plug holes, and a solid-fluid coupling model incorporating dynamic change of borehole suction pressure is established. The results of the study show the following. (1) When there is no borehole deformation (i.e., complete borehole), the suction pressure loss of drainage system in the borehole is very small, whose effect on gas drainage can be neglected. (2) In case of borehole collapse, the suction pressure loss is big at the collapse segment, and the total suction pressure loss of the drainage system in the borehole is bigger than that in the complete hole. However, it is smaller than the suction pressure of the drainage system and exerts limited effect on gas drainage. As the borehole collapse deteriorates, the effective drainage section of the borehole becomes smaller, while the suction pressure loss in the borehole increases continuously; thus, the gas drainage effect continuously worsens. (3) In case of plug hole, a continuous medium forms between the plug segment coal body and the surrounding coal seam, the plug segment drainage pressure turns into coal-bed gas pressure, and effective drainage length of the borehole shortens, seriously affecting the gas drainage effect. The study carries important theoretical guiding significance for improving gas drainage effect and effectively preventing gas disasters.
机译:为研究燃气排水上的三种变形不稳定模式的效果,分析了软煤层的变形不稳定机理,提出了三种变形不稳定模式,适用于软煤层,即完整孔,塌孔和插头建立了包含钻孔吸入压力的动态变化的孔和固体流体耦合模型。研究结果表明以下。 (1)当没有钻孔变形(即,完全钻孔)时,钻孔中排水系统的吸入压力损失非常小,其对储气速度排放的影响可以忽略。 (2)在钻孔塌陷的情况下,吸入压力损失在塌陷段大,并且钻孔中排水系统的总吸气压力损失大于完全孔中的排水系统。然而,它小于排水系统的吸入压力,并对气体排水产生有限的影响。随着钻孔塌陷劣化,钻孔的有效排水部分变小,而钻孔中的吸入压力损失连续增加;因此,储气效果不断恶化。 (3)在塞孔的情况下,插塞段煤体和周围的煤层时,插头段排水压力匝成煤层气压力,和钻孔缩短的有效引流长度之间的连续介质的形式,严重影响煤气排水效应。该研究对改善煤气排水效果和有效防止煤气灾害进行了重要的理论指导意义。

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