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特厚煤层综放工作面地面钻孔抽采治理瓦斯技术

Gas control technology of ground drilling extraction in fully-mechanized caving face of extra thick coal seam

  • 摘要: 针对山西某矿特厚煤层放顶煤小煤柱工作面瓦斯与煤自燃的双重灾害,通过对工作面灾害及治理方法的分析,提出了通过改变地面钻孔施工工艺,同时抽采裂隙带、冒落带瓦斯的治理方法,利用微地震技术对工作面破裂带进行划分,确定了地面钻孔最佳抽采位置。结果表明:地面钻孔最佳抽采距离约等于2 个工作面周期来压步距,且地面钻孔抽采范围具有不均衡性,滞后作用距离是超前作用距离的3.3倍;验证了区分高、低压抽采系统的重要性,在治理效果基本相同的条件下,以DN300地面钻孔为例,施工速度是岩巷掘进的8倍,施工成本是其1/26,优势明显。

     

    Abstract: According to the double disasters of the gas and coal spontaneous combustion in a top coal caving mining face with small coal pillars in ultra thick seam of a coal mine in Shanxi Province,with an analysis on the disaster and control methods of the coal mining face,a construction technology to change the surface borehole was provided.Meanwhile,the control methods of the gas drainage from the crack zone and roof falling zone were provided.A microseismic technology was applied to divide the fracture zone of the coal mining face.The optimum gas drainage location of the surface borehole was determined.The results showed that the optimum gas drainage distance of the surface boreholes was about two periodic strata weighting spans of the coal mining face.But the gas drainage scope of the surface boreholes would be imbalance and the distance of the hysteresis effect was 3.3 times of the advance effect distance.The importance of the high distinguishing and low pressure gas drainage system was proved.Under the same condition of treatment effect,taking DN300 ground drilling as an example,the construction speed is eight times that of rock roadway excavation,the construction cost is 1/26,ground drilling has obvious advantages.

     

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