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Gas drainage from different mine areas: optimal placement of drainage systems for deep coal seams with high gas emissions

机译:来自不同矿区的瓦斯抽放:针对高瓦斯排放的深煤层的瓦斯抽放系统的最佳布置

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The techniques of stress relief mining in low-permeability coal seams and pillarless gob side retained roadway entry using Y-type ventilation and gas drainage systems were developed to control gas outbursts and applied successfully. However, as the mining depth increasing, parts of the gas drainage system are not suitable for mines with high gas emissions. Because larger mining depths cause higher ground stresses, it becomes extremely difficult to maintain long gob side roadways. The greater deformation suffered by the roadway is not favorable for borehole drilling for continuous gas drainage. To solve these problems, Y-type ventilation and gas drainage systems installed from a roof roadway were designed for drainage optimization. This system was designed based on a gas-enrichment zone analysis developed from mining the 11-2 coal seam in the Zhuji Mine at Huainan, Anhui Province, China. The method of Y-type gas extraction from different mine areas was applied to the panel 1112(1) in the Zhuji Mine. The absolute gas emission rate was up to 116.3?m_(3)/min with an average flow of 69.1?m_(3)/min at an average drainage concentration of nearly 85?%. After the Y-type method was adopted, the concentration of gas in the return air was 0.15?%–0.64?%, averaging 0.39?% with a ventilation rate of 2100–2750?m_(3)/min. The gas management system proved to be efficient, and the effective gas control allowed safe production to continue.
机译:为控制瓦斯突出,开发了利用Y型通风和瓦斯抽放系统在低渗煤层和无柱采空区留巷巷道进行卸压开采的技术,并成功应用。但是,随着开采深度的增加,部分瓦斯抽放系统不适用于高瓦斯排放的煤矿。由于较大的开采深度会导致较高的地面应力,因此维持较长的采空区侧巷道变得极为困难。巷道承受的较大变形不利于连续抽采瓦斯的钻孔。为了解决这些问题,设计了从屋顶巷道安装的Y型通风和瓦斯排放系统,以优化排放。该系统是根据在中国安徽省淮南市诸暨煤矿11-2煤层开采天然气富集区分析而设计的。将不同矿区的Y型瓦斯抽采方法应用于诸暨矿区的面板1112(1)。绝对气体排放速率高达116.3?m_(3)/ min,平均排水量为69.1?m_(3)/ min,平均排水浓度接近85%。采用Y型方法后,回风中的气体浓度为0.15%–0.64%,平均为0.39%,通风速率为2100–2750?m_(3)/ min。事实证明,气体管理系统是有效的,并且有效的气体控制使安全生产得以继续。

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