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LIU Mingzhi, PAN Feng, REN Chunxiang. Fault Monitoring Device and Monitoring Technology for Underground Gas Beam Pipe in Coal Mine[J]. Safety in Coal Mines, 2019, 50(8): 100-103.
Citation: LIU Mingzhi, PAN Feng, REN Chunxiang. Fault Monitoring Device and Monitoring Technology for Underground Gas Beam Pipe in Coal Mine[J]. Safety in Coal Mines, 2019, 50(8): 100-103.

Fault Monitoring Device and Monitoring Technology for Underground Gas Beam Pipe in Coal Mine

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  • Published Date: August 19, 2019
  • This paper starts from solving the specific problem that the existing underground gas beam tube monitoring system is difficult to find the fault location of the beam tube, provides a fault monitoring device embedded in underground gas beam pipe monitoring system, determines the monitoring technology and method including gas tightness test, system calibration and real-time monitoring of gas beam pipeline fault monitoring device in underground coal mine. It ensures that the failure of the beam pipe line is eliminated timely and effectively, and the availability and reliability of the gas beam pipe monitoring system are ensured.
  • [1]
    房文杰,李长录.矿用束管监测系统工作站的分析比较与发展趋势[J].工矿自动化,2012(4):55-57.
    [2]
    煤炭科学研究总院抚顺分院.一种矿井气体束管监测系统的火灾危险识别方法:CN201110263108.6[P].2012-04-25.
    [3]
    煤炭科学研究总院抚顺分院.矿井气体束管监测系统及气体爆炸性与火灾危险识别方法:CN200810012304.4[P].2008-12-10.
    [4]
    ASZ-3型矿井火灾预报束管监测系统[Z].抚顺:煤炭科学研究总院抚顺分院,2005.
    [5]
    薛毅.煤矿火灾束管监测系统性能测试分析及研究应用[D].太原:太原理工大学,2014.
    [6]
    煤科集团沈阳研究院有限公司,抚顺中煤科工安全仪器有限公司.矿井气体束管管路监测系统:CN201310585845.7[P].2014-03-05.
    [7]
    煤科集团沈阳研究院有限公司,抚顺中煤科工安全仪器有限公司.矿井气体束管管路监测系统的监测方法:CN201310589949.5[P].2014-02-19.
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