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True Triaxial Experimental Study of Disturbed Compound Dynamic Disaster in Deep Underground Coal Mine

机译:深层地下煤矿干扰复合动态灾害的真实三轴试验研究

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With the increase of coal extracting depth, a considerable number of dynamic disasters display the co-occurrence and coupling effect of rockburst and coal-gas outburst, which is defined as the disturbed compound dynamic disaster. In this study, two loading modes were adopted to investigate disaster characteristics using true triaxial apparatus. The stress states of one freed and the other five stressed faces were introduced to simulate actual stress conditions. Two high-speed cameras were used to capture the disaster process. The mechanical and strength properties, failure modes, and ejection kinetic energy were analyzed. Results showed that the compound dynamic disaster mainly exhibited local grain ejection, fragment spalling, large-scale grain ejection, plate bending, and ultimately failure. The strength of the sample first increased and then decreased slowly with the increase in the intermediate principal stress. After failure, a V-shaped coal-burst pit was formed, which was approximately parallel to the intermediate principal stress and perpendicular to the free face. The grain ejection exhibited obvious characteristics of spatial sorting, and the grain size decreased with the distance from the free face. The kinetic energy showed little change with increase in the intermediate principal stress in the displacement loading mode; whereas, it first increased and then decreased in the stress loading mode. The pressurized gas promotes the development of coal cracks and fully fractures the coal rock. Under the combined actions of the elastic energy stored in coal mass and the internal energy of pressurized gas, compound dynamic disasters may occur. Gas extraction and coal seam elastic softening techniques can effectively reduce and prevent the occurrence probability of compound dynamic disasters.
机译:随着煤炭提取深度的增加,相当多的动态灾害显示了岩爆和煤气爆发的共同发生和耦合效果,其被定义为受扰动的复合动态灾害。在这项研究中,采用了两种装载模式来研究使用真正的三轴设备进行灾害特性。引入了一种解释的压力状态和其他五个压力面,以模拟实际的压力条件。使用两个高速摄像机捕获灾难过程。分析了机械和强度性能,失效模式和喷射动能。结果表明,复合动态灾害主要表现出局部谷物喷射,碎片剥落,大规模谷物喷射,板弯曲,最终失效。样品的强度首先增加,然后随着中间主应力的增加而缓慢降低。在发生故障后,形成V形煤脉冲坑,其大致平行于中间主应力并垂直于自由面。谷物喷射表现出明显的空间分类特征,并且晶粒尺寸随着自由脸的距离而降低。动能随着位移负载模式中的中间主应力的增加而变化很小;而它首先增加,然后在应力加载模式下降。加压气体促进煤裂纹的发育,完全裂缝煤岩。在储存煤质量和加压气体内部能量的弹性能量的组合作用下,可能发生复合动态灾害。气体提取和煤层弹性软化技术可以有效地减少和预防复合动态灾害的发生概率。

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