Gas-dynamic processes and causes of accidents at mines

I. D. Bahrii, V. R. Dubosarskyi, I. Ye. Mamyshev
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引用次数: 0

Abstract

Geodynamic phenomena that occur during the exploitation of a coal-bearing massif lead to human casualties, reduce the speed of penetration, and significantly complicate the operation of the mine.The article analyzes existing views on geodynamic processes occurring within mining fields located in coal-bearing formations. A safe technology for identifying potential outburst locations during coal mining is characterized. The technology has been tested during prospecting and environmental studies within the mining workings at active mines and abandoned mining fields. The results of profile and planar investigations in he areas exhibiting geodynamic outbursts in coal deposits and mines are presented.When sampling subsoil air using the technology of structural-thermo-atmospheric-hydrogeochemical research (STAHGS), which is carried out on the surface of the earth in profile and planar versions, the authors came to the conclusion about the possibility of predicting fault zones of increased permeability and zones of low fluid permeability. The first affect the rate of destruction of rocks under pressure, and in the second case, the possibility of gas emissions into the mine, which can be accompanied by an explosion and fire. Such zones are dangerous, because the most destructive events occur in places of collision. Early identification of places of geodynamic stress of rocks, fault zones of increased permeability, accumulation of gases – all this will allow to make a decision in advance about changing the conditions of conducting mining operations and degassing of the coal massif.In addition, the authors draw attention to hydrogen gas as one of the causes of initiation of explosions and fires during underground mining operations in mines, which is not taken into account at the current stage of safety control of mining operations. The possible cause of a hydrogen explosion is not taken into account in coal mine accidents. The appearance of hydrogen and helium in coal samples taken from the mine may indicate the deformation of the massif, which leads to the opening of cracks and the outflow of gas from deeper horizons. And then an increase in the concentration of hydrogen, not methane, creates the conditions for explosions and fires.
矿井瓦斯动力过程及事故原因
含煤岩体在开采过程中出现的地球动力学现象,不仅会造成人员伤亡,还会降低掘进速度,给矿井作业带来极大的复杂性。本文分析了现有的关于含煤地层矿区地球动力过程的观点。介绍了一种安全的煤矿开采中潜在突出位置识别技术。这项技术已在勘探和环境研究期间在活跃矿山和废弃矿区的采矿作业中进行了试验。本文介绍了在煤层和矿井中发生地球动力突出的地区进行剖面和平面调查的结果。利用构造-热-大气-水文地球化学研究(STAHGS)技术在地表剖面和平面上对地下空气进行采样,得出了预测高渗断裂带和低渗断裂带的可能性。前者影响岩石在压力下的破坏速度,后者影响气体排放到矿井中的可能性,这可能伴随着爆炸和火灾。这样的区域是危险的,因为最具破坏性的事件发生在碰撞的地方。早期识别岩石的地球动力应力,断层渗透性增加,气体积聚的地方-所有这些都将允许提前做出决定,改变进行采矿作业和煤块脱气的条件。此外,作者还提请注意,氢气是矿山地下开采过程中引起爆炸和火灾的原因之一,这在现阶段的采矿作业安全控制中没有得到考虑。在煤矿事故中,氢气爆炸的可能原因没有被考虑在内。该矿煤样中氢气和氦气的出现可能表明了岩体的变形,这导致了裂缝的打开和气体从更深的层位流出。氢气浓度的增加,而不是甲烷浓度的增加,为爆炸和火灾创造了条件。
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来源期刊
CiteScore
0.30
自引率
0.00%
发文量
6
审稿时长
6 weeks
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