李琳. 特厚煤层综放开采过大劈裂构造动力显现预评价及施工[J]. 煤矿安全, 2014, 45(2): 169-171.
    引用本文: 李琳. 特厚煤层综放开采过大劈裂构造动力显现预评价及施工[J]. 煤矿安全, 2014, 45(2): 169-171.
    LI Lin. Dynamic Appeared Pre-evaluation and Construction of Crossing Large Splitting Structure in Extremely Thick Seam With Fully Mechanized Caving Mining[J]. Safety in Coal Mines, 2014, 45(2): 169-171.
    Citation: LI Lin. Dynamic Appeared Pre-evaluation and Construction of Crossing Large Splitting Structure in Extremely Thick Seam With Fully Mechanized Caving Mining[J]. Safety in Coal Mines, 2014, 45(2): 169-171.

    特厚煤层综放开采过大劈裂构造动力显现预评价及施工

    Dynamic Appeared Pre-evaluation and Construction of Crossing Large Splitting Structure in Extremely Thick Seam With Fully Mechanized Caving Mining

    • 摘要: 针对特厚煤层综放开采过大劈裂构造工程问题,利用电磁辐射技术对综掘面和综放面动力显现进行了监测,得到特厚煤层电磁辐射强度和脉冲数特征,预测无动力倾向。针对劈裂构造空洞特点,采取强化临时支护和永久支护,辅以充填、注浆,有效控制了围岩变形和支护稳定性。

       

      Abstract: According to large splitting structural engineering problem in extremely thick seam with fully mechanized caving mining, electromagnetic radiation technology is applied to monitor dynamic appeared in mechanized excavation face and mechanized caving face, electromagnetic radiation intensity and feature of pulse number are obtained, which predicts non-dynamic tendency. For cavity characteristic of splitting structure, temporary support and permanent support are strengthened, assisted with filling, grouting, surrounding rock deformation and supporting stability are effectively controlled.

       

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