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首页> 外文期刊>Advances in civil engineering >Experimental Investigation of the Influence for Stoping Sequence and Granular Grading on Lateral Pressure during the Nonpillar Sublevel Caving Mining
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Experimental Investigation of the Influence for Stoping Sequence and Granular Grading on Lateral Pressure during the Nonpillar Sublevel Caving Mining

机译:在非柱子升降型矿井中横向压力横向序列和粒度分级的影响实验研究

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In this study, a self-designed scaled physical model was conducted to investigate the variation laws of lateral pressure under different stoping sequences and granular gradings, and drawing ore in the experiments was used to simulate the mining process. Under the limiting equilibrium state, the values of lateral pressure increased exponentially with the increasing depth of granular media, and the growth rate of lateral pressure gradually decreased as the depth of granular media increased. Then, the laboratory results indicated that the distribution laws of lateral pressure were divided into three parts, namely, the drawing influencing region, the upper descending zone, and the central growth area. As the height of the isolated extraction zone (IEZ) increased, the scope of the drawing influencing region and the upper descending zone increased, while the range of central growth area decreased. In the case of an invariable height of IEZ, more reduction ratio and the scope for drawing influencing region could be appeared in the lower wall. Increasing the space between the drawpoints and granular grading were an effective way to control the reduction rate of lateral pressure in the drawing influencing region, while the scope of the above parts kept stable. Moreover, the average values of lateral pressure showed an increasing trend as the granular grading decreased at the same number of drawing ore.
机译:在该研究中,进行了一种自行设计的缩放物理模型,以研究不同止血序列和颗粒等待下的横向压力的变化规律,并且使用实验中的绘图矿石来模拟采矿过程。在限制平衡状态下,随着粒度深度的增加,横向压力的值呈指数增加,并且随着粒状介质的深度增加,横向压力的生长速率逐渐降低。然后,实验室结果表明,横向压力分布规律分为三个部分,即绘图影响区域,上下降区和中央生长区域。随着隔离的提取区的高度(IEZ)增加,绘图影响区域和上下降区的范围增加,而中央生长面积的范围减小。在IEZ的不变高度的情况下,可以在下墙上出现更多的减少比率和绘制影响区域的范围。增加绘图点和粒度分级之间的空间是控制绘图影响区域中横向压力的减小速率的有效方法,而上述部件的范围保持稳定。此外,随着颗粒分级在相同数量的绘图矿石中降低,横向压力的平均值显示出增加的趋势。

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