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DENG Xin, WANG Zai-ju, YAO Zhi-shu. Remediation Technology and Internal Force Monitoring for Lining Structure of Horsehead in Deep Well[J]. Safety in Coal Mines, 2013, 44(10): 100-103.
Citation: DENG Xin, WANG Zai-ju, YAO Zhi-shu. Remediation Technology and Internal Force Monitoring for Lining Structure of Horsehead in Deep Well[J]. Safety in Coal Mines, 2013, 44(10): 100-103.

Remediation Technology and Internal Force Monitoring for Lining Structure of Horsehead in Deep Well

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  • Published Date: October 19, 2013
  • The initial supporting force of -960 m horsehead's lining structure was monitored in the auxiliary shaft of Wangfenggang Coal Mine. The results showed that the safety of the port position lining structure would be tend to the limit state. In order to enable the normal operation of lining structure, the secondary grouting and anchor wire complement were used. The field monitoring and measurement results showed that the deformation of horsehead's sides and the radial convergence value of the sidewall was stabilized, the force of anchor was less than the rupture force. The repair and treatment scheme was reliable, which ensured the safe and stable of horsehead supporting.
  • [1]
    姚直书,程桦,杨志鸿,等.曲江风井井壁破坏的力学机理分析及修复治理[J].煤炭科学技术,2002,30(6):12-14.
    [2]
    刘延生,赵景忠,杨家恩,等.千米深井马头门及井筒修复工程实践与认识[J].建井技术,2005,26(3):1-6.
    [3]
    刘业献,邵昌饶,杨瑞斌.唐口煤矿千米埋深岩层中大跨度硐室群施工技术[J].煤炭科学技术,2006,34(12):34-37.
    [4]
    姜玉松.刘庄矿风井马头门破坏的分析[J].矿业研究与开发,2008,28(4):19-21.
    [5]
    吴翔天,谷栓成.亭南矿马头门稳定性分析[J].矿山压力与顶板管理,2004(4):61-64.
    [6]
    姚直书,程桦,高业禄,等.复杂地质条件下深井马头门支护结构及应用[J].煤炭科学技术,2009,37(1):69-71.
    [7]
    程桦,蔡海兵,荣传新,等.深井连接硐室群围岩稳定性分析及支护对策[J].煤炭学报,2011,36(2):261-266.
    [8]
    刘宝有.钢弦式传感器及其应用[M].北京:中国铁路出版社,1986:50-51.
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