煤炭工程 ›› 2018, Vol. 50 ›› Issue (2): 6-9.doi: 10.11799/ce201802002

• 设计技术 • 上一篇    下一篇

8.0m大采高工作面煤矿地下水库建设技术可行性研究

庞义辉,李鹏,周保精   

  1. 北京低碳清洁能源研究所
  • 收稿日期:2017-09-04 修回日期:2017-10-08 出版日期:2018-02-20 发布日期:2018-04-23
  • 通讯作者: 庞义辉 E-mail:80455141@qq.com

Underground reservoir construction feasibility analysis in 8.0m super large mining height working face

  • Received:2017-09-04 Revised:2017-10-08 Online:2018-02-20 Published:2018-04-23

摘要: 基于补连塔煤矿8.0m大采高工作面煤层赋存条件及水文地质条件,分析了煤矿地下水库建设的技术可行性内涵,采用理论计算及UDEC数值模拟分析方法,研究确定了8.0m大采高工作面的涌水量、储水空间及导水裂隙带高度。研究结果表明,12511超大采高工作面导水裂隙带直接沟通至地表,裂采比约为23.78,满足地下水库建设对导水通道的要求。通过分析超大采高工作面上覆岩层断裂结构及各分界岩层的位移轨迹曲线,确定工作面采空区的最大储水量约为5058773m3,满足地下水库对库容的要求。补连塔煤矿8.0m大采高工作面满足煤矿地下水库建设对水源、库容、导水通道条件的要求,可以通过建设煤矿地下水库实现对矿井水的储存于调用。

关键词: 大采高工作面, 煤矿地下水库, 水量预测, 导水裂隙带高度, 地下水库库容

Abstract: Based on coal mine in Bulianta tower 8.0 m large mining height coal seam occurrence condition and the hydrogeological conditions, the state of numerical simulation and theoretical calculation analysis method, studies the 8.0 m working face of large mining height are broken water inflow, water storage space and water flowing fractured zone height and the strength of the artificial waterproof seal. The results show that the water gap of the high working face of 12511 is directly communicated to the surface, and the crack ratio is 23.78, which meets the requirements of the construction of underground reservoir to guide the water channel. Through the analysis of large mining height are broken on the working plane of fracture structure and the boundary strata overburden stratum displacement path curve, determine the mined-out area's largest water is about 5058773 m3, meet the requirements of underground reservoir for storage. Through the analysis of the strength requirements of the coal pillar and the artificial waterproof sealing wall, the safety technical requirements of the operation of underground reservoir are put forward. Based on the above analysis results, the requirements of the construction of the underground reservoir in the coal mine are met with the requirements of water source, storage capacity and water channel.

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