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Simulation study on the stability of mining thin flat-grade iron ore body with Hydraulic support longwall method

机译:采用液压支撑长壁法的采矿薄扁平级铁矿体稳定性的仿真研究

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This paper proposed hydraulic support longwall method for mining glacis thin orebody. The DaZhuang ore section of Guandian Ore Mining whose orebody in the line of -8'-16'was chosen as the research object. It applied the FLAC numerical simulation method to study the changes of surrounding rock stress in the mining face, displacement and plastic zones, and put forward the changing law of the rock stress, displacement and plastic zones in the mining process. Besides, it proved that the mechanical condition of the roofs changed in different stages. When the distance between pillar and mining face was in the range of 4m-8m, the state was relatively stable, and the pillar and surrounding rocks were in small range of shearing and tensile yield. When distance was 12m, the roof suffered from compression. When it was up to 16m, the roof and bottom rock displayed tension. However, the appreciation of stress changed very little at different stages. The stress concentration circle formed between the top and bottom of the pillar, and the unloading appeared in the top and bottom gap. The nearer to the coal face, the more powerful of stress concentration, and the influence of pillar's position on stress concentration degree is very little in the front of coal face. The structure would be in stable equilibrium when the distance between single stent and coal face is 12m. In such circumstances, the security of roof would be improved if more stents are added.
机译:本文提出了液压支撑长壁法,用于采矿甘油薄矿体。乌甸矿石矿区的大卓矿石部分,矿体在-8'-16'was线作为研究对象。它应用FLAC数值模拟方法研究采矿面,位移和塑料区周围岩石应力变化,提出了采矿过程中岩石应力,位移和塑料区的变化规律。此外,证明屋顶的机械状况发生在不同的阶段。当柱和采矿面之间的距离在4m-8m的范围内时,状态相对稳定,柱子和周围岩石在剪切和拉伸产率的小范围内。当距离为12米时,屋顶遭受压缩。当它高达16米时,屋顶和底部岩石显示张力。然而,对不同阶段的压力升值变化了很少。在柱的顶部和底部之间形成的应力集中圆,并且卸载在顶部和底间隙中出现。煤面越近,压力集中的强大功能越强,柱的应力集中度的影响在煤炭面前很少。当单支架和煤面之间的距离为12M时,该结构将处于稳定的平衡。在这种情况下,如果添加更多支架,将提高屋顶的安全性。

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