方佳伟, 韩保山, 周加佳, 王正喜, 张丁亮, 刘嘉, 徐建军. 基于工作面全覆盖的地面瓦斯高效抽采模式研究[J]. 煤田地质与勘探, 2020, 48(3): 81-85. DOI: 10.3969/j.issn.1001-1986.2020.03.012
引用本文: 方佳伟, 韩保山, 周加佳, 王正喜, 张丁亮, 刘嘉, 徐建军. 基于工作面全覆盖的地面瓦斯高效抽采模式研究[J]. 煤田地质与勘探, 2020, 48(3): 81-85. DOI: 10.3969/j.issn.1001-1986.2020.03.012
FANG Jiawei, HAN Baoshan, ZHOU Jiajia, WANG Zhengxi, ZHANG Dingliang, LIU Jia, XU Jianjun. Surface efficient gas extraction mode based on full coverage of working face[J]. COAL GEOLOGY & EXPLORATION, 2020, 48(3): 81-85. DOI: 10.3969/j.issn.1001-1986.2020.03.012
Citation: FANG Jiawei, HAN Baoshan, ZHOU Jiajia, WANG Zhengxi, ZHANG Dingliang, LIU Jia, XU Jianjun. Surface efficient gas extraction mode based on full coverage of working face[J]. COAL GEOLOGY & EXPLORATION, 2020, 48(3): 81-85. DOI: 10.3969/j.issn.1001-1986.2020.03.012

基于工作面全覆盖的地面瓦斯高效抽采模式研究

Surface efficient gas extraction mode based on full coverage of working face

  • 摘要: 针对煤层碎软、渗透性低、工作面瓦斯抽采难度大且效率低的问题,提出两端对接分段压裂顶板水平井组的工作面瓦斯抽采全覆盖模式。选取淮北煤田宿县矿区某矿井为例,依据研究区地应力与工作面展布特征,结合研究区内瓦斯地质条件及煤层力学性质分析,利用交叉偶极子声波测井方法优选水平井水平段布置方位,采用Fracpro PT的压裂模拟技术确定水平井水平段距离71煤层的范围,即布置在煤层顶板2 m以内;采用抽采模拟技术对研究区试验工程进行预测,结果显示,抽采3 a后工作面的瓦斯含量和压力都大幅度降低,达到了工作面瓦斯抽采全覆盖的要求。提出的抽采模式为国内类似地质条件煤矿地面瓦斯高效抽采提供一种手段。

     

    Abstract: Aiming at the problems of soft and broken coal seam, low permeability, difficulty in gas extraction and low drainage efficiency in working face, a full-coverage mode for gas extraction in working face through the horizontal well group with staged fracturing roof at both ends is proposed. Taking a mine in Suxian mining area of Huaibei coalfield as an example, based on the characteristics of in-situ stress and working face distribution, combined with the analysis of gas geological conditions and coal seam mechanical properties in the area, the cross section dipole sonic logging method was used to optimize the orientation of the horizontal section of the horizontal well, and the horizontal well was determined by the Fracpro PT fracturing simulation technology. The horizontal section was away from the coal seam 71 arranged within 2 m of the top of the coal seam; the drainage simulation technology was used to predict the test project in the study area, the gas content and pressure of the working face have greatly reduced after 3 years of drainage, which meets the requirements of full coverage of gas drainage in working face. The extraction mode proposed in this paper provides a means for the efficient extraction of ground gas in domestic coal mines with similar conditions.

     

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