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Stability of workface using long-wall mining method in extremely thin and gently inclined iron mine

机译:使用长壁挖掘方法在极薄和轻柔的铁矿中使用长壁采矿方法的解决方案稳定性

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Long-wall mining method has its own advantages, such as small mining-cutting ratio, the simple technique of recovery, high level of mechanization etc, which is the optimal method used to mine gently inclined and extremely thin iron mine. How to ensure the safety of workers and equipment during mining is the key technical process. Based on elastic-plastic mechanics theory, the mechanic model of long-wall method mining gently inclined and extremely thin iron mine is established and the critical safety distance of workface is obtained. With the FLAC-2D simulation software, the rule of stress change, the deformation of workface and surrounding rock in different control-roof width are also summarized. The final results accord with the ones of theory test. We confirm the support-frame resistance of workface by Analogy-statistic method. The results prove that hydraulic support-frame have the ability to provide enough pressure to assure the stability of working face within the 5-meter of control-roof width.
机译:长壁采矿方法具有自身优势,如小型采矿比例,恢复技术简单,机械化高水平等,这是用于矿山轻轻倾斜和极薄的铁矿的最佳方法。如何确保矿业期间的工人和设备的安全是关键技术过程。基于弹塑性力学理论,建立了长壁法采矿和极薄铁矿的长壁方法机械模型,获得了工作面的临界安全距离。利用FLAC-2D仿真软件,还概述了应力变化规则,各种控制屋顶宽度的工作面和周围岩石的变形。最终结果与理论考试中的结果符合。我们通过类比统计方法确认Workface的支持框架电阻。结果证明了液压支撑框架具有提供足够的压力以确保5米控制屋顶宽度内工作面的稳定性的能力。

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