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UDEC-based Stability Analysis of the Goafs in Fragment Ore Section

机译:基于UDEC的基于UDEC的稳定性分析碎片矿石部分

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Taking the fragment ore section of orebody No. 105 with the high value in Gaofeng mine in Guangxi province for example, three representative kinds of goafs in all scales were selected on the basis of the differences of goaf scale, surrounding rock conditions and situ stress field, and their stability were calculated by the universal distinct element code (UDEC). The calculation results showed as follows: 1) with the increase of goaf scale, the tensile stress scope in the goaf roof expanded from 12m to 60m; 2) the tensile failure mode of joints surfaces was primary, and that of ore block was auxiliary; 3) the maximum principal stress peak could reach 40.3MPa which exceeded rock body tensile strength 38.07MPa, but the influence on goaf stability was small because the peak was far away from goaf; 4) the plastic zone in roof changed from 7m to 12m because of the increased scale, so the goaf stability became worse gradually; 5) the objective principles that the whole plastic zone distributed on the left part of goaf roof and no plastic zone in pillar provided reference for choosing proper position of filling wellhead.
机译:以广西高峰矿的高价值在广西省的高价值拍摄矿石部分,在脱贫规模,周围岩石条件和原位应力场的差异的基础上选择了所有尺度的三种代表性的缺口,并通过通用不同元素代码(UDEC)计算它们的稳定性。计算结果显示如下:1)随着GOF规模的增加,GOF屋顶的拉伸应力范围从12米扩大到60米; 2)关节表面的拉伸衰竭模式是初级的,矿石嵌段是辅助的; 3)最大主应力峰可以达到40.3MPa,超过岩石体拉伸强度38.07MPa,但对GOF稳定性的影响很小,因为峰值远离GOF; 4)屋顶的塑料区由于增加的尺寸增加到7米至12米,因此GoF稳定性变得逐渐变得更糟; 5)目的原则是,在GoF屋顶的左侧部分分布的整个塑料区,在柱子中没有塑料区,为选择填充井口的适当位置提供了参考。

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