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Influence of combination forms of intact sub-layer and tectonically deformed sub-layer of coal on the gas drainage performance of boreholes: a numerical study

机译:完好无损的煤层和构造变形的煤层的组合形式对钻孔瓦斯抽采性能的影响:数值研究

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摘要

High concentration and large flow flux of gas drainage from underground coal seams is the precondition of reducing emission and large-scale use of gas.However,the layered occurrence of coal seams with tectonically deformed sub-layers and intact sub-layers makes it difficult to effectively drain gas through commonly designed boreholes.In this study,the gas drainage performance in coal seams with different combinations of tectonically deformed sub-layers and intact sub-layers was numerically analyzed.The analysis results show that the gas drainage curve changes from a single-stage line to a dual-stage curve as the permeability ratios of Zone II(kII)and Zone I(kI)increase,raising the difficulty in gas drainage.Furthermore,a dual-system pressure decay model based on the first-order kinetic model was developed to describe the dual-stage characteristics of pressure decay curves with different permeability ratios.In the end,the simulation results were verified with reference to in-situ drainage data from literature.The research results are helpful for mines,especially those with layered coal seams comprising tectonically deformed sub-layers and intact sub-layers,to choose appropriate gas drainage methods and develop the original drainage designs for achieving better gas drainage performance.
机译:从地下煤层的高浓度和大流量通量来自地下煤层的前提是减少排放和大规模使用气体的前提。然而,具有细胞间变形的亚层和完整的子层的煤层分层发生使得难以实现通过常用的钻孔有效地排出气体。本研究中,在数值分析了具有不同组合的煤层中的煤层中的气体排水性能和完整的子层。分析结果表明,储气曲线从单个变化 - 作为双阶段曲线的级别线作为区域II(KII)和区域I(KI)的渗透率增加,提高了气体排水的困难。诸如基于一阶动力学的双系统压力衰减模型开发了模型以描述具有不同渗透率的压力衰减曲线的双阶段特征。在尽头,参照原位排水管验证模拟结果来自文献的GE数据。研究结果对矿井有所帮助,特别是具有细胞源性变形的亚层和完整的子层的分层煤层的矿物,以选择合适的储气方法,并开发用于实现更好的煤气排水性能的原始排水设计。

著录项

  • 来源
    《国际煤炭科学技术学报:英文版》 |2020年第003期|P.571-580|共10页
  • 作者单位

    Beijing Key Laboratory for Precise Mining of Intergrown Energy and Resources China University of Mining&Technology Beijing Beijing 100083 ChinaSchool of Emergency Management and Safety Engineering China University of Mining&Technology Beijing Beijing 100083 ChinaState Key Laboratory Cultivation Base for Gas Geology and Gas Control(Henan Polytechnic University) Jiaozuo 454003 China;

    Beijing Key Laboratory for Precise Mining of Intergrown Energy and Resources China University of Mining&Technology Beijing Beijing 100083 ChinaSchool of Emergency Management and Safety Engineering China University of Mining&Technology Beijing Beijing 100083 China;

    Flight Technology College Civil Aviation University of China Tianjin 300300 China;

    Beijing Key Laboratory for Precise Mining of Intergrown Energy and Resources China University of Mining&Technology Beijing Beijing 100083 ChinaSchool of Emergency Management and Safety Engineering China University of Mining&Technology Beijing Beijing 100083 China;

    Beijing Key Laboratory for Precise Mining of Intergrown Energy and Resources China University of Mining&Technology Beijing Beijing 100083 ChinaSchool of Emergency Management and Safety Engineering China University of Mining&Technology Beijing Beijing 100083 China;

    State Key Laboratory Cultivation Base for Gas Geology and Gas Control(Henan Polytechnic University) Jiaozuo 454003 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 无机化学;
  • 关键词

    Tectonically deformed coal; Pressure decay; Permeability; Hydraulic flushing boreholes;

    机译:构造变形煤;压力衰减;渗透率;液压冲孔;
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