林东才, 栾恒杰, 刘庆龙. 综放回采巷道断层防水煤柱留设优化研究[J]. 煤矿安全, 2014, 45(9): 28-31.
    引用本文: 林东才, 栾恒杰, 刘庆龙. 综放回采巷道断层防水煤柱留设优化研究[J]. 煤矿安全, 2014, 45(9): 28-31.
    LIN Dongcai, LUAN Hengjie, LIU Qinglong. Study on Fault Waterproof Pillar Optimization for Fully Mechanized Mining Roadway[J]. Safety in Coal Mines, 2014, 45(9): 28-31.
    Citation: LIN Dongcai, LUAN Hengjie, LIU Qinglong. Study on Fault Waterproof Pillar Optimization for Fully Mechanized Mining Roadway[J]. Safety in Coal Mines, 2014, 45(9): 28-31.

    综放回采巷道断层防水煤柱留设优化研究

    Study on Fault Waterproof Pillar Optimization for Fully Mechanized Mining Roadway

    • 摘要: 针对综放回采巷道留设较大断层防水煤柱严重影响工作面生产系统布置,降低煤炭采出率的问题进行了断层防水煤柱留设优化研究。以义桥煤矿YF20-3断层防水煤柱留设优化为研究实例,采用钻探、巷探确定断层即不含水也不导水;通过理论计算,得到断层煤柱的最小留设宽度为47 m;采用灰色关联分析法和LMBP神经网络建立综合集成评价模型对断层煤柱的可靠性进行评价,当煤柱宽度不小于10 m时安全可靠;利用FLAC3D软件分析了断层煤柱在工作面推进过程中的应力及破坏规律,对评价模型的评价结果进行了验证。最终确定YF20-3断层煤柱的留设宽度优化为10 m。在1304工作面开采过程中断层煤柱没有发生大规模破坏,顺槽运行良好。

       

      Abstract: In terms of fully mechanized mining roadway with large fault waterproof pillar which will influence working face system distribution seriously and decreasing coal mining rate, in this article, it states fault waterproof pillar optimization research. According to research optimization of Yiqiao Coal Mine YF20-3 fault waterproof pillar by the way of exploration drilling and tunneling prospecting confirming no water and no water transmission. It theoretically simulates the minimum width of 47 m. Combining Grey Correlation Analysis and LMBP neural networks builds integration evaluation model to value stability of fault pillar. When coal pillar width is no less than 10 m, it is safe and stable. The article proves the evaluation model results and analyzes the stress and failure regularity during the process of advancing coal face with FLAC3D and it confirms that estimated optimization width is 10 m for YF20-3 fault pillar. By the way, during the process of 13-04 working face mining there is no big scale damage and crossheading operates well.

       

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