张泽宇, 谯永刚, 李豪君, 雒铜童, 郭强, 李亮红. 沿空留巷U型通风瓦斯时空分布及治理研究[J]. 煤矿安全, 2023, 54(4): 51-59.
    引用本文: 张泽宇, 谯永刚, 李豪君, 雒铜童, 郭强, 李亮红. 沿空留巷U型通风瓦斯时空分布及治理研究[J]. 煤矿安全, 2023, 54(4): 51-59.
    ZHANG Zeyu, QIAO Yonggang, LI Haojun, LUO Tongtong, GUO Qiang, LI Lianghong. Study on temporal and spatial distribution and treatment of “U” ventilation gas in gob-side entry retaining[J]. Safety in Coal Mines, 2023, 54(4): 51-59.
    Citation: ZHANG Zeyu, QIAO Yonggang, LI Haojun, LUO Tongtong, GUO Qiang, LI Lianghong. Study on temporal and spatial distribution and treatment of “U” ventilation gas in gob-side entry retaining[J]. Safety in Coal Mines, 2023, 54(4): 51-59.

    沿空留巷U型通风瓦斯时空分布及治理研究

    Study on temporal and spatial distribution and treatment of “U” ventilation gas in gob-side entry retaining

    • 摘要: 针对明鑫煤矿沿空留巷单U型通风回采初期回风巷和上隅角瓦斯蓄积问题,建立瓦斯对流和扩散数学方程,构建强耦合物理模型;对通风稳定阶段,上隅角埋管联合高位钻孔抽采和纯风排条件下瓦斯时空分布进行研究,并通过现场实践进行验证。研究结果表明:回采距离为20 m时,采空区流场形成B型和D型复合分布,使工作面瓦斯体积分数出现峰值现象,存在抽采条件下沿空留巷侧采空区2/5区域形成截流影响区,1/7区域形成三角回流区,表明抽采作用可减弱留巷侧采空区流线向上隅角闭合和采空区流线向留巷侧采空区发展的趋势;抽采条件下,上隅角位置采空区走向方向瓦斯体积分数上升起始点较纯风排滞后4.7 m,上隅角瓦斯体积分数峰值和工作面平均值、回风巷平均值分别下降了86%、69%、37.7%。现场实践表明:治理前后回风巷瓦斯体积分数平稳区延长60 m,上隅角与回风巷瓦斯体积分数峰值下降21.7%。

       

      Abstract: Aiming at the problem of gas accumulation in upper corner and return air roadway of single U type ventilation mining in early stage of gob-side entry retaining in Mingxin Coal Mine, the mathematical equation of gas convection and diffusion is established and a strong coupling physical model is built. In the stable stage of ventilation, the space-time distribution of gas under the conditions of high-level borehole extraction and pure air exhaust is studied and verified by field practice. The study results show that when the mining distance is 20 m, the flow field in the goaf forms the complex distribution of “B” and “D”, which causes the peak of gas volume fraction in the working face. There are two-fifths of the goaf area along the goaf side forms an interception influence area, and one-seventh of the goaf area forms an triangular return area under the condition of extraction, which indicates that the extraction weakens the trend of the goaf flow line closing to the upper corner of the goaf side and the goaf flow line developing to the goaf side of the goaf; under the condition of extraction, the starting point of gas volume fraction rise in the direction of goaf in upper corner is 4.7 m behind that of pure air exhaust, and the peak value of gas volume fraction in upper corner, average value of working surface and average value of return lane decrease 86%, 69% and 37.7% respectively. Field practice shows that the smooth area of gas volume fraction in return lane before and after treatment is extended by 60 m, and thepeak value of gas volume fraction in upper corner and return lane decreases by 21.7%.

       

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