Study on cracking mechanism and key parameters of roof in gob-side entry retaining by pre-split blasting roof in deep mine

Xiao Liu, Xueqiu He, Yuntao Liang, Xinzhu Hua, Chen Li
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Abstract

Based on 7135 working face of Qidong Coal Mine, the cracking mechanism of pre-splitting of gob-side entry retaining by roof cutting and the key parameters of pre-splitting blasting are studied by means of theoretical analysis, numerical simulation, and on-site measurement. Under the same blasting conditions, the energy of shaped-charge blasting in the direction of shaped charge is much larger than that of non-shaped-charge blasting, and the cracks generated along the direction of shaped charge are longer than that of non-shaped-charge blasting. The key parameters of pre-splitting cracks are the hole spacing and charge length. The crack propagation law of two holes blasting at the same time with different blasting methods, different linear charge density, and different hole spacing is studied. It is obtained that the cracking effect of shaped-charge blasting with the same hole spacing is better than that of non-shaped-charge blasting, showing that it can form part-through cracks; Increasing the linear charge density can increase the crack distance, but also destroy the integrity of the retained rock mass. The key parameters of advanced pre-splitting blasting in engineering practice are put forward. Generally, the maximum hole spacing and the minimum charge length that can produce part-through cracks are selected. When the hole spacing is 600 mm and the charge length is 4 m, the crack propagation of roof and the stress change of anchor cable after blasting are measured, and the crack formation rate reaches 86% to 90% within the blasting depth of blasting hole, and the anchor cable is in a good stress state, which can effectively control the roof. The research results provide a theoretical basis for the parameter design of pre-splitting blasting cracking of gob-side entry retaining by roof cutting.
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深部矿山预裂爆破顶板保留巷道顶板开裂机理及关键参数研究
以祁东煤矿7135工作面为研究对象,通过理论分析、数值模拟、现场实测等方法,研究了切顶预裂掘进巷道侧进留巷的裂隙机理及预裂爆破的关键参数。在相同的爆破条件下,异形装药爆破在异形装药方向的能量远大于非异形装药爆破,沿异形装药方向产生的裂纹长于非异形装药爆破。预分裂裂缝的关键参数是孔距和装药长度。研究了不同爆破方法、不同线性电荷密度和不同孔距下两孔同时爆破的裂纹扩展规律。结果表明,在相同孔距下,异形装药爆破的开裂效果优于非异形装药爆破,表明其可以形成部分贯通裂缝;增加线性装药密度可以增大裂缝距离,但同时也破坏了保留岩体的完整性。提出了工程实践中先进预裂爆破的关键参数。一般情况下,选择能产生部分贯通裂缝的最大孔距和最小装药长度。当孔间距为 600 mm、装药长度为 4 m 时,测定了爆破后顶板裂纹扩展情况和锚索应力变化情况,在爆破孔爆破深度范围内,裂纹形成率达到 86% 至 90%,且锚索应力状态良好,能有效控制顶板。研究成果为顶板切割预裂爆破掘进进尺留设参数设计提供了理论依据。
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