刘玉良, 彭宝山, 蒙文军, 刘立仁, 王伟东. 浅埋深煤层采空区注氮防灭火技术[J]. 煤矿安全, 2017, 48(5): 73-76.
    引用本文: 刘玉良, 彭宝山, 蒙文军, 刘立仁, 王伟东. 浅埋深煤层采空区注氮防灭火技术[J]. 煤矿安全, 2017, 48(5): 73-76.
    LIU Yuliang, PENG Baoshan, MENG Wenjun, LIU Liren, WANG Weidong. Goaf Nitrogen Injection Fire-fighting Technology of Shallow Buried Depth Coal Seam[J]. Safety in Coal Mines, 2017, 48(5): 73-76.
    Citation: LIU Yuliang, PENG Baoshan, MENG Wenjun, LIU Liren, WANG Weidong. Goaf Nitrogen Injection Fire-fighting Technology of Shallow Buried Depth Coal Seam[J]. Safety in Coal Mines, 2017, 48(5): 73-76.

    浅埋深煤层采空区注氮防灭火技术

    Goaf Nitrogen Injection Fire-fighting Technology of Shallow Buried Depth Coal Seam

    • 摘要: 以西北矿区三道沟煤矿为背景,采用理论分析和数值模拟对浅埋深大范围采空区注氮技术进行研究,结果表明:未采取注氮措施时,“氧化带”分布明显比采取注氮措施时的范围大;增加注氮流量后,采空区各层位“氧化带”范围明显减小,当采空区存在大量漏风通道时,增大注氮量可有效代替采空区漏风,起到惰化采空区的效果;对比采空区不同层位的高浓度氮气聚集区,层位越高,高浓度氮气聚集区越小,被惰化的面积越小。

       

      Abstract: Taking northwest mining area Sandaogou Mine as the background, this paper adopts theoretical analysis and numerical simulation to study a wide range of shallow buried depth goaf nitrogen injection technology, the results show that: without using nitrogen injection measures, the oxidation zone distribution is obviously larger than that adopting nitrogen injection measures; after increasing the flow of nitrogen injection, the “oxidation zone” range of each layer in goaf reduced obviously. When a large number of air leakage passage is in gob, increasing the amount of nitrogen injection can effectively instead of air leakage in goaf to inert the mined-out area. Compared with the high concentration nitrogen accumulation area in different layers of gob, the higher of the horizon is, the smaller of the high concentration nitrogen accumulation area is, the smaller of the inerting area is.

       

    /

    返回文章
    返回