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Mine Size Effects on Coal Pillar Stress and Their Application for Partial Extraction

机译:矿山尺寸对煤柱应力的影响及其局部萃取应用

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摘要

Coal is a nonrenewable resource. Hence, it is important to improve the coal recovery ratio and ensure the stability of coal mines for sustainable development of mining cities. Partial extraction techniques, such as strip pillar mining or room-and-pillar mining, are efficient methods to extract coal. Pillar stress is a critical property for pillar design and for the assessment of mine stability after partial extraction. Current pillar stress calculation methods can sometimes overestimate the pillar stress and unnecessarily large coal pillars may be left underground, which leads to a waste of coal resources. In this paper, the size effects of mining activity on the maximum vertical pillar stress were investigated using numerical simulations. Both strip pillar mining and room-and-pillar mining were considered as possible mining scenarios at different mining depths. The results show that the maximum pillar stress of a mine is primarily controlled by four factors: the mine size to mining depth ratio, the mining width to pillar width ratio, the overburden elastic modulus, and the mining depth. The maximum pillar stress of a mine gradually increases to an ultimate value as the mine size increases. Simplified formulas and methodology have been derived for stress calculations under consideration of mine size effects and, therefore, can reduce the waste of coal resources from the overestimation of pillar stress.
机译:煤炭是一种不可再生的资源。因此,提高煤炭回采率,确保煤矿的稳定性矿业城市的可持续发展是非常重要的。局部提取技术,如带材柱式开采或房间柱式开采,是有效的方法来提取煤。支柱压力是支柱设计和用于矿井稳定性的部分提取后的评价的关键性质。当前柱应力计算方法有时会高估支柱压力和不必要的大煤柱可留在地下,煤炭资源的浪费导致。在本文中,采矿活动上的最大垂直支柱应力的大小影响使用数值模拟进行了研究。两个条柱采矿和房间柱式开采被认为是在不同开采深度可能挖掘场景。结果表明,矿井的最大支柱应力主要是由四个因素控制:矿大小挖掘深度比,采宽到支柱宽度比率,上覆岩层弹性模量,并且所述开采深度。矿井的最大支柱应力逐渐增加到最终值作为矿尺寸增大。简化计算公式和方法已经导出了应力计算所考虑的矿井规模效应,因此,可以从支柱压力的高估减少煤炭资源浪费。

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