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首页> 外文期刊>Open Journal of Geology >Gas Drainage Technology in Fully Mechanized Caving Face with Horizontal Sublevel Mining in Steep and Extra-Thick Coal Seam
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Gas Drainage Technology in Fully Mechanized Caving Face with Horizontal Sublevel Mining in Steep and Extra-Thick Coal Seam

机译:汽油排水技术在陡峭的厚厚煤层中水平卸液矿井综采性洞面

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This paper analyzes the gas source of the horizontally sectioned fully mechanized caving face in the steeply inclined and extra-thick seam of Adaohai Coal Mine, and numerically simulates the stress distribution and pressure relief of the lower section coal after the upper section working face is mined. It theoretically analyzed the reasonable layout of the drainage boreholes, and designed the drainage borehole layout accordingly. In the upper and lower section of the working face, the actual drainage effect of the boreholes was inspected, and the air exhaust gas volume in the working face was statistically analyzed. It was confirmed that the layout of boreholes was reasonable, the gas control effect of working face was greatly improved and fully met the needs of safe mining. The control effect was greatly improved and the need for safe mining was fully met, and thus a gas drainage technology suitable for the coal seam storage conditions and mining technology of the Adaohai Coal Mine was found. That is to say: the gas emission from the working face of the section mining mainly comes from its lower coal body. Pre-draining the lower coal body of the section and depressurizing gas interception and drainage are the key to effectively solve the problem of gas emission from the working face. Drainage boreholes in the working face of the section should be arranged at high and low positions. The high-level boreholes are located about 2 m from the top of the working face, and the high-level boreholes are about 9 m away from the top of the working face. Through the pre drainage of high and low-level boreholes in advance and the interception and pressure relief drainage, the gas control in the horizontal sublevel fully mechanized caving mining face in steep and extra thick coal seam can realize a virtuous cycle.
机译:本文分析了Adaohai煤矿陡峭倾斜和超厚缝中水平切片的综合煤平面的气体源,在开采上部工作面后,数值模拟下部煤的应力分布和减压。理论上,理论上分析了排水钻孔的合理布局,并相应地设计了排水钻孔布局。在工作面的上部和下部,检查钻孔的实际排水效果,并且在统计学上分析了工作面中的空气废气量。确认钻孔布局合理,工作面的气体控制效果大大提高,充分满足了安全挖掘的需求。控制效果大大提高,完全满足了对安全采矿的需求,因此发现了一种适用于煤层储存条件和煤矿煤矿采矿技术的燃气排水技术。也就是说:挖掘工作面的气体排放主要来自其下煤体。预先排放的较低煤体和减压气体拦截和排水是有效解决工作面气体排放问题的关键。该截面工作面的排水钻孔应布置在高位和低位置。高级钻孔距离工作面顶部约2米,高级钻孔距离工作面顶部约9米。通过预先引进高压钻孔和拦截和浮动缓解排水,陡峭的液体液压化煤层采矿面的气体控制可以实现良好的循环。

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