刘彦斌. 高瓦斯回采工作面卸压瓦斯抽采与配风量相关性研究[J]. 煤矿安全, 2016, 47(8): 167-169,173.
    引用本文: 刘彦斌. 高瓦斯回采工作面卸压瓦斯抽采与配风量相关性研究[J]. 煤矿安全, 2016, 47(8): 167-169,173.
    LIU Yanbin. Relevant Research on Pressure Relief Gas Extraction and Air Distribution in High Gas Mining Face[J]. Safety in Coal Mines, 2016, 47(8): 167-169,173.
    Citation: LIU Yanbin. Relevant Research on Pressure Relief Gas Extraction and Air Distribution in High Gas Mining Face[J]. Safety in Coal Mines, 2016, 47(8): 167-169,173.

    高瓦斯回采工作面卸压瓦斯抽采与配风量相关性研究

    Relevant Research on Pressure Relief Gas Extraction and Air Distribution in High Gas Mining Face

    • 摘要: 对阳煤集团3个矿近年来12个回采面不同配风量,矿井主要通风机不同运行状态时的卸压瓦斯抽采数据进行统计分析发现:回采面卸压瓦斯抽采率与配风量成反比。当瓦斯抽采系统能力确定后,加大工作面配风量会使瓦斯抽采率降低;而增加风排瓦斯量,甚至会使上隅角、回风流及瓦斯排放巷的瓦斯浓度升高,与期望目标相背离;采空区卸压瓦斯在其体积浮力和通风流场的共同作用下不断向垮落带顶部的“O”形圈通道的回风侧区域运移,形成卸压瓦斯抽采的最佳区域;强化瓦斯抽采是保障安全高效生产的关键。

       

      Abstract: The statistical analysis of pressure relief gas extraction data is carried out for 12 working faces with different air distribution and different operation states of mine main fans in three mines of Yangmei Group in recent years. The pressure relief gas extraction rate at mining face is inversely proportional to the air distribution. When the gas extraction system capacity is determined, increasing air distribution volume of working face can reduce the gas extraction rate; increasing wind-exhaust gas quantity can even increase gas concentration at upper corner, return-air current and gas drainage roadway, which deviates the expected goals. Pressure relief gas in goaf continously moves to return-air side of "O" ring channel at the top of caving zone under the function of buoyancy and wind flow field, and forms the best region of pressure relief gas extraction.Strengthening the gas extraction is the key to guarantee safe and efficient production.

       

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