首页> 外文会议>22nd International Conference on Ground Control in Mining Aug 5-7, 2003 Morgantown, WV, USA >Surface Movement of Super-wide Longwall Panels Using Top-coal Caving Method
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Surface Movement of Super-wide Longwall Panels Using Top-coal Caving Method

机译:顶煤崩落法超宽长壁板的表面运动

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Experiences in the developed countries have shown that continuous increase of panel width (or face length) is one of the major technical trends for high production high efficiency mines. Increasing the panel width will increase not only the panel output, simplify the gateroad layout, facilitate high concentration of production, but also increase resources recovery and facilitate protection of surface structures. This paper uses the No.4326 super-wide panel, Wangzhuang Coal Mine as an example. This mine employs the fully-mechanized top-coal caving longwall mining method. Through surface subsidence monitoring, the dynamic characteristics of surface movement were obtained. The dynamic surface movement during mining and the final surface movement after mining were predicted using the Mining Subsidence Prediction System. The results indicate that after mining, the surface above the super-wide panel reached a state of full subsidence. So it can ensure the No.309 National Highway above is located in the flat bottom of the subsidence basin, and there is little impact on the national highways when panels on both sides of 4326 Panel are mined.
机译:发达国家的经验表明,面板宽度(或工作面长度)的不断增加是高产高效矿井的主要技术趋势之一。增加面板宽度不仅会增加面板产量,简化闸道布局,促进生产的高度集中,而且会增加资源回收率,并有利于保护表面结构。本文以4326号超宽面板王庄煤矿为例。该矿采用综放开采长壁开采法。通过地面沉降监测,获得了地面运动的动态特征。使用采矿沉陷预测系统预测了采矿过程中的动态地表运动和采矿后的最终地表运动。结果表明,开采后,超宽面板上方的表面达到了完全沉降的状态。这样可以确保上面的309号国道位于沉陷盆地的平坦底部,并且在开采4326面板两侧的面板时对国道几乎没有影响。

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