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Freezing method for rock cross-cut coal uncovering I: Mechanical properties of a frozen coal seam for preventing outburst

机译:岩石交叉煤的冷冻方法揭示I:用于防止爆发的冷冻煤层的力学性能

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A comprehensive technology is proposed to realize fast and safe rock cross-cut coal uncovering (RCCCU) based on artificial freezing engineering method. This comprehensive technology includes four steps, namely, drilling a borehole, wetting the coal body by water injection, gas drainage and freezing the coal seam by liquid nitrogen injection. In this paper, the compressive strength, tensile strength and shear strength of frozen coal specimens are tested to obtain the mechanical parameters of the specimen. Then, for RCCCU under freezing temperatures, the outburst prevention effects are calculated and quantitatively analysed with regard to three aspects, namely, the enhancement of coal the mechanical properties, the reduction in the coefficient of outburst hazard (COH) in the distressed zone and the reduction in the interfacial elastic energy ratio (IEER) between the coal seam and the roof/floor. The results show that a considerable improvement in the mechanical properties of frozen coal and that the coal mechanical parameters, such as the compressive strength and the tensile strength, increase linearly with decreasing temperature. The coefficient of outburst hazard in the distressed zone decreases rapidly and drops from above 0.8 to below 0.3. The interfacial elastic energy ratio is greatly reduced from dozens of times of that of the roof/floor before freezing to several times of that of the roof/floor after freezing, which effectively weakens the sudden change of the elastic energy at the coal-rock interface.
机译:提出了一种综合技术,以实现基于人为冷冻工程方法的快速安全岩石跨切割煤(RCCCU)。这种综合技术包括四个步骤,即钻孔,通过液氮注射通过注水,气体排水,渗透煤层润湿煤体。在本文中,测试冷冻煤样品的抗压强度,拉伸强度和剪切强度,得到样品的机械参数。然后,对于在冻结温度下的RCCCU,在三个方面计算并定量分析突出预防效果,即煤的煤炭性能的增强,造成伤害区中的突出危害系数(COH)的减少。煤层与屋顶/地板之间的界面弹性能比(IEER)降低。结果表明,冷冻煤的机械性能和煤机械参数(如抗压强度和拉伸强度)相当大的改善,随着温度降低线性而导致线性增加。窘迫区中的突出危险系数迅速降低,落后于0.8至低于0.3。界面弹性能量比从屋顶/地板的几十次冻结之前从屋顶/地板的几次大大降低,这有效地削弱了煤岩界面处弹性能的突然变化。

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