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浅析关键层位置对卸压开采效应的影响
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作者 高学奎 《东西南北(教育)》 2019年第17期395-395,共1页
上部保护层开采后,煤层附近的气体流入将导致工作面超过极限。提出气源和气体迁移分析以减少保护层的气体膨胀。保护层和保护层的提取孔的钻孔布置时间的影响分析和相应的解决方案。为了实现煤层采煤的顺利运行,松邦减压技术应用于软煤... 上部保护层开采后,煤层附近的气体流入将导致工作面超过极限。提出气源和气体迁移分析以减少保护层的气体膨胀。保护层和保护层的提取孔的钻孔布置时间的影响分析和相应的解决方案。为了实现煤层采煤的顺利运行,松邦减压技术应用于软煤层煤巷,可有效防止巷道变形和破坏.近年来,随着煤矿井下开发的不断增加,煤矿生产的不断发展,矿井的瓦斯量也在不断增加,仅依靠通风方式解决瓦斯问题现在是不合理的。特别是在煤层减压中,瓦斯抽放技术的要求越来越严格,有效的瓦斯抽采对瓦斯的控制具有重要意义。本文首先了解了我国煤层气的主要特征,阐述了地下瓦斯抽采的作用,探讨了煤层减压和地下瓦斯综合开采技术,总结了综合开采方法。 展开更多
关键词 煤矿减压区 地下天然气 提取技术 提取方法
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Numerical simulation on pressure-relief deformation characteristics of underlying coal-rock mass after upper protective layer excavation 被引量:1
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作者 Jian LIU Jie ZHAO Ming-Song GAO 《Journal of Coal Science & Engineering(China)》 2013年第3期276-281,共6页
Based on the occurrence features of Group B coal-seams at a coal mine in the Huainan coal mining area, the elasto-plastic mechanical damage constitutive functions and numerical model for the protective layer excavatio... Based on the occurrence features of Group B coal-seams at a coal mine in the Huainan coal mining area, the elasto-plastic mechanical damage constitutive functions and numerical model for the protective layer excavation were established. With the UDEC2D computer program, after the upper protective layer was mined, the stress field change trends, crack development, and expansion deformation trends of underlying coal rock seams in the floor of the working face were simulated and analyzed. The simulation results show the stress changes in coal rock seams, the evolution process of pre-cracks during the process of upper protective layer mining, the caved zone and fractured zone of the underlying coal rock seams. At the same time, the results from the actual investigation and analysis of protected layer deformation match the simulation values, which verifies the validity and accuracy of numerical simulation results. The study results have an important guiding significance for gas management in low permeability and high gas coal seams with similar mining conditions. 展开更多
关键词 upper protective layer mining pressure-relief deformation underlying coal-rock mass fracture development
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