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Strength response characteristics and coupling support of deep roadway in soft rock masses

机译:软岩体深巷的强度响应特征及耦合支撑

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Monitoring analysis was performed for the deformation characteristics of a deep roadway in soft rock masses in a certain mine by the convergence instrument. It was indicated that shotcrete and bolt support for the surrounding rock deformation under forces produced a poor effect so that a shotcrete rockbolt mesh coupling support pattern was put forward and four coupling support schemes were designed to carry out field monitoring for surrounding rock deformations on the basis of above schemes. According to the research, we could summarize as follows. Firstly, when load in floor strata reached a certain value, shear failure took place on the edge of floor; then, with the continuous increase of such a load, shear zones were subsequently expanded and connected together into one big region; at that time, as the load on floor strata had been up to its limit, the floor could be settled sharply as long as this load went up slightly so that the uplift of rock mass gave rise to floor heave. Secondly, bearing capacity of floor rocks was dependent on the average binding force, internal friction angle and unit weight of floor rocks as well as the concentrated stress action width of lateral wall and the average pressure value borne by the roadway floor. Thirdly, after the shotcrete rockbolt mesh coupling support was adopted, two-sided displacement dropped 80% and above, roof subsidence decreased more than 70% and the capacity of floor heave falls by over 90%; as a result, stability of the roadway could be significantly improved.
机译:通过收敛仪器对特定矿井软岩体深道巷道的变形特征进行了监测分析。有人指出,对周围岩石变形的喷射桥和螺栓支撑产生了较差的效果,使得提出了喷射岩梁网耦合支撑图案,并设计了四种耦合支撑方案,以便在基础上对周围岩石变形进行现场监测在方案中。根据该研究,我们可以总结如下。首先,当楼层中的负荷达到一定的值时,剪切失败发生在地板边缘;然后,随着这种载荷的连续增加,随后将剪切区扩展并连接在一起到一个大区域;那时,随着地层的负荷达到其极限,只要这个负荷略微上升,就可以急剧解决,使得岩石隆起的隆起升起落地。其次,地板岩石的承载力取决于地板岩的平均结合力,内部摩擦角和单位重量以及侧壁的浓缩应力作用宽度和道路地板承载的平均压力值。第三,采用射击岩石耦合耦合载体后,双面位移下降了80%及以上,屋顶沉降减少超过70%,楼层涨幅超过90%;结果,可以显着改善道路的稳定性。

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