煤炭工程 ›› 2025, Vol. 57 ›› Issue (10): 78-87.doi: 10. 11799/ ce202510010

• 生产技术 • 上一篇    下一篇

地面井掏煤造穴卸压瓦斯多场耦合规律及工程应用

童校长,叶春辉,温鸿达,徐鹤翔,刘厅   

  1. 1. 淮南矿业(集团)有限责任公司 煤矿瓦斯治理国家工程研究中心,安徽 淮南 232001

    2. 深部煤炭安全开采与环境保护全国重点实验室,安徽 淮南 232001

    3. 中国矿业大学 安全工程学院,江苏 徐州 221116

  • 收稿日期:2024-09-09 修回日期:2025-05-26 出版日期:2025-10-10 发布日期:2025-11-12
  • 通讯作者: 童校长 E-mail:183042045@qq.com

Law and engineering application of gas extraction by cavitation relief in surface Wells

  • Received:2024-09-09 Revised:2025-05-26 Online:2025-10-10 Published:2025-11-12

摘要:

为实现深部低渗高瓦斯煤层高效卸压增透,提出地面井掏煤造穴卸压增透技术,构建了造穴卸压强化瓦斯运移多场耦合模型,分析了不同参数对煤体损伤区面积、渗透率与瓦斯压力的影响规律。研究表明:煤体黏聚力越小,煤体受扰动产生的损伤区面积越大,增渗效果越显著;内摩擦角增大时,损伤区域和渗透率降低。钻孔间距减小促进损伤区域连通,存在最优钻孔间距使得损伤面积最大;此外,初始渗透率低时,有效抽采半径减小。井下瓦斯参数考察结果表明,实施地面钻孔大直径掏煤造穴施工工艺体系后,瓦斯压力和含量显著降低,透气性系数提高约10倍,实现了区域低渗煤层高效卸压。

关键词: 掏煤造穴 , 瓦斯运移 , 多场耦合 , 渗透率 , 瓦斯抽采 , 地面井

Abstract:

To enhance pressure relief and permeability in deep, high-gas coal seams, this paper proposes a surface well cavity creation and pressure relief permeability enhancement technique. A multi-field coupling model of gas migration in the reinforced coal body of the cavity creation area was constructed, analyzing the influence of different parameters on the area of the damaged coal body, permeability, and gas pressure. Simulation based on the coal excavation and cavity creation at the Zhangji Mine A group site analyzed the pressure relief and permeability enhancement effects under different initial permeability and extraction time conditions. The study indicates that reducing borehole spacing promotes connectivity in the damaged area, but excessively small spacing is detrimental to permeability improvement. Increasing borehole size significantly enlarges the damaged area and permeability. The smaller the cohesion of the coal body, the more notable the permeability enhancement effect. With an increase in the internal friction angle, both the damaged area and permeability decrease. Additionally, low initial permeability results in a reduced effective extraction radius. Investigations of underground gas parameters show that after implementing the surface drilling large-diameter coal excavation and cavity creation process, gas pressure and content significantly decrease, the permeability coefficient increases by approximately tenfold, effectively improving gas extraction efficiency.

中图分类号: