方世玉, 岳丰田, 石荣剑, 刘萍, 张浩北. 液氮冻结法在含流水地层斜井封水中的应用[J]. 煤矿安全, 2013, 44(4): 165-167.
    引用本文: 方世玉, 岳丰田, 石荣剑, 刘萍, 张浩北. 液氮冻结法在含流水地层斜井封水中的应用[J]. 煤矿安全, 2013, 44(4): 165-167.
    FANG Shi-yu, YUE Feng-tian, SHI Rong-jian, LIU Ping, ZHANG Hao-bei. Application of Liquid Nitrogen Freezing Method on Sealing Water of Pipelining Formation in Inclined Shaft[J]. Safety in Coal Mines, 2013, 44(4): 165-167.
    Citation: FANG Shi-yu, YUE Feng-tian, SHI Rong-jian, LIU Ping, ZHANG Hao-bei. Application of Liquid Nitrogen Freezing Method on Sealing Water of Pipelining Formation in Inclined Shaft[J]. Safety in Coal Mines, 2013, 44(4): 165-167.

    液氮冻结法在含流水地层斜井封水中的应用

    Application of Liquid Nitrogen Freezing Method on Sealing Water of Pipelining Formation in Inclined Shaft

    • 摘要: 为了快速修复某矿斜井流水地层中冻结帷幕的缺口,基于液氮低温高效原理,提出了采用液氮冻结技术对含流水砾石层实现快速冻结的方案,采取了加大液氮供液管在流水砾石层位置的开口密度、增大液氮流量、调低回气温度等措施来保证砾石层冻结帷幕的交圈。测温数据表明:积极冻结110 h后,测1孔24 m层位温度降至-31.3 ℃;积极冻结160 h后,A1孔24 m层位温度降至-10.3 ℃。冻结结束后,井下抽水,水位不变。

       

      Abstract: In order to repair the gap of freezing curtain in pipelining formation of the inclined shaft, it put forward the scheme to freeze the pipelining gravel layer rapidly by using liquid nitrogen freezing technology based on the low temperature and high efficient principle of liquid nitrogen. Several measures were taken in this engineering to ensure the cross circle of freezing curtain in gravel layer, such as increasing the opening density of liquid nitrogen supply pipes in gravel layer and the flow of liquid nitrogen, decreasing the temperature of return air. The temperature data showed that the temperature of the 24 meters layer in NO.1 hole decreased to -31.3℃ after 110 hours positive freezing; the temperature of the 24 meters layer in Hole A1 decreased to -10.3℃ after 160 hours positive freezing. After the end of the freezing, the water level kept invariant with pumping water underground.

       

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