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Analysis of the Risk of Water Breakout in the Bottom Plate of High-Intensity Mining of Extra-Thick Coal Seams
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作者 Shuo Wang hongdong kang Xinchen Wang 《Journal of Geoscience and Environment Protection》 2024年第5期81-91,共11页
In order to clarify the danger of water breakout in the bottom plate of extra-thick coal seam mining, 2202 working face of a mine in the west is taken as the research object, and it is proposed to use the on-site moni... In order to clarify the danger of water breakout in the bottom plate of extra-thick coal seam mining, 2202 working face of a mine in the west is taken as the research object, and it is proposed to use the on-site monitoring means combining borehole peeping and microseismic monitoring, combined with the theoretical analysis to analyze the danger of water breakout in the bottom plate. The results show that: 1) the theoretically calculated maximum damage depth of the bottom plate is 27.5 m, and its layer is located above the Austrian ash aquifer, which has the danger of water breakout;2) the drill hole peeping at the bottom plate of the working face shows that the depth of the bottom plate fissure development reaches 26 m, and the integrity of the water barrier layer has been damaged, so there is the risk of water breakout;3) for the microseismic monitoring of the anomalous area, the bottom plate of the return air downstream channel occurs in the field with a one-week lag, which shows that microseismic monitoring events may reflect the water breakout of the underground. This shows that the microseismic monitoring events can reflect the changes of the underground flow field, which can provide a reference basis for the early warning of water breakout. The research results can provide reference for the prediction of sudden water hazard. 展开更多
关键词 Extra-Thick Coal Seam High-Intensity Mining Microseismic Monitoring Water-Surge Hazard Borehole Peeping
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分支矿体首采分段覆盖层形成与回采方案优化研究
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作者 李建东 《煤矿现代化》 2024年第2期1-5,共5页
西二采区所使用的回采方案无法提供高效、安全的效果,导致分支矿体在开采过程中回收率低、矿石贫化率高、效率低。针对上述分析,分析分析了分支矿体首采分段覆盖层形成技术,在此基础上提出2种回采方案,对回采方案进行建模与分析;针对回... 西二采区所使用的回采方案无法提供高效、安全的效果,导致分支矿体在开采过程中回收率低、矿石贫化率高、效率低。针对上述分析,分析分析了分支矿体首采分段覆盖层形成技术,在此基础上提出2种回采方案,对回采方案进行建模与分析;针对回采方案的不足,构建回采多目标优化模型,对两种回采方案进行优化。优化结果表明,方案1优化后矿石品位为0.451%,矿石贫化率为23.548%;方案2优化后矿石品位为0.428%,矿石贫化率为27.424%;1 580 m分段以西回采结束可以在底板至1 630 m处形成覆盖层,满足正常采矿需求。 展开更多
关键词 分支矿体 覆盖层 回采方案 优化
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