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How to Mitigate Coal Mine Bumps Through Understanding of the Violent Failure of Coal Specimens

机译:如何通过了解煤样的暴力破坏减轻煤矿的颠簸

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This research is divided into two parts: the first part of this research focuses on understanding coal mine bump mechanisms, and the second part focuses on mitigating the violent failure associated with a bump. Many researchers believe that the coal bumps happen because of sudden loss of constraint between pillar/ roof and pillar/floor or the hammering effect due to the breaking of thick, massive strata above the coal seam, creating a sudden impact load on the pillars and causing them to bump. However, very little work has been done to explore and understand the consequences of these proposed mechanisms for coal bumps. In the first part of this research, computer simulation of coal specimen behavior have been used to explore two issues: 1) How would an instantaneous loss of constraint or a small sudden impact load cause violent failure? 2) How does the strength of the coal specimen control coal mine bumps? Eliminating or reducing the violent failure is the main objective of the second part of this research. The coal specimen needs to be softened either in the rib zone or the core zone and then its mode of failure studied to see whether it is violent or not. Instantaneous loss of constraint and the hammering effect are associated with sudden release of elastic energy, increase in the kinetic energy, and very rapid transient vertical stresses of the coal specimen. These are three of the major proposed mechanisms for bumps. The potential for violent failure increases with increasing the unconfined compressive strength, UCS, of the coal specimen. Failure of the rib zone is not the main factor for the violent failure of a coal specimen. The energy stored in the core zone is the key factor for the violent failure.
机译:本研究分为两部分:第一部分着重于了解煤矿的撞击机理,第二部分着重于减轻与撞击有关的暴力破坏。许多研究人员认为,发生煤爆是由于柱/顶和柱/地板之间的约束突然消失,或者是由于煤层上方厚而厚的地层破裂而造成的锤击效应,在柱上产生了突然的冲击载荷并导致他们撞。但是,很少有工作去探索和理解这些拟议的颠簸机制的后果。在本研究的第一部分中,已使用计算机模拟了煤样品行为来探讨两个问题:1)瞬时约束损失或小的突然冲击载荷将如何导致剧烈破坏? 2)煤样品的强度如何控制煤矿的颠簸?消除或减少暴力失败是本研究第二部分的主要目标。煤标本需要在肋骨区域或岩心区域进行软化,然后研究其破坏模式以查看其是否剧烈。约束的瞬时损失和锤击效应与弹性能量的突然释放,动能的增加以及煤样品的非常快速的瞬态垂直应力有关。这是提出的三个主要的颠簸机制。剧烈破坏的可能性随着煤样品的无侧限抗压强度UCS的增加而增加。肋骨区域的破坏不是造成煤样品剧烈破坏的主要因素。储存在核心区域中的能量是剧烈失效的关键因素。

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