钻孔瓦斯抽采有效半径渗流-热相似数值模拟

    Numerical Simulation of Seepage-heat Similarity for Effective Radius of Drilling Gas Drainage

    • 摘要: 钻孔瓦斯抽采有效半径直接关系到矿井安全生产、瓦斯治理投入、资源的合理利用等多个重要方面,通过ANSYS数值模拟渗流-热相似分析模块对新丰煤矿3种透气性环境下的抽采半径及其相关规律进行研究,发现钻孔抽采在三维空间中存在差异,各个方向上并不完全一样,抽采有效范围内煤层瓦斯压力与抽采时间成严格的负指数关系,煤层透气性系数的提高能成倍的缩短极限抽采时间并增大抽采有效半径,矿井在瓦斯治理与利用过程中应以提高煤层透气性系数为主,这样既可以首先对煤层进行消突,又可以增大抽采有效半径,还可以缩短抽采时间,一举多得。

       

      Abstract: The effective radius of drilling gas drainage is directly related to coal mine safety production, gas control inputs, rational use of resources and so on. By using the seepage-heat similar analysis module of ANSYS numerical simulation, it studied the drainage radius and laws of three kinds of permeability environment in Xinfeng Coal Mine, and it found out that drilling drainage was different in three-dimensional space in the range of effective drainage, which was not almost the same. It was negative index relationship between coal seam gas pressure and drainage time. The increase of coal seam permeability coefficient could exponentially shorten the limit drainage time and enlarge effective drainage radius. It was the most important to improve the coal seam permeability coefficient in the process of gas control and use in coal mines, which could not only eliminate outburst, but also enlarge effective drainage radius, and shorten drainage time, thus achieved multiple purposes.

       

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