Degassing of the Developed Coal Seams along a Directional Route Using Wells

V.S. Zaburdayev, E.V. Fedorov, F.S. Belousov
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Abstract

The technology for conducting degassing work in the Russian mines is determined by the experience of half a century of using methods and means to reduce the methane abundance of excavation areas based on drilling wells along the developed and adjacent coal seams into mined-out spaces. The parameters of degassing and methane emission sources are legalized by the industry regulations, scientifically substantiated, and published in the scientific and practical works. The mines of the Kuznetsk coal basin and the Vorkuta deposit, mainly with high productivity of coal mining in the conditions of developing a suite of methane-bearing coal seams using complex mechanized faces were selected as objects of study: named after S.M. Kirov, named after V.D. Yalevsky (formerly «Kotinskaya»), Boldyrevsky coal seams (index 24) and seam 52. Gas hazard of the coal mines is determined by the volume of methane emissions, explosions of methane-air mixtures, loss of people life and is caused by the joint influence of natural, mining, organizational and subjective factors. The main indicator of gas hazard when developing a suite of methane-bearing coal seams is the absolute methane abundance of the excavation area. The method was used to predict the intensity of methane release from the exposed surface of a mined coal seam into the bottomhole space of the longwall and adjacent coal seams. Methane release from the exposed surface of a contiguous coal seam, subject to unloading from the rock pressure, was determined by analogy with the mined seam. The release of methane from the broken coal was established experimentally. When the working face unloads adjacent coal seams, the intensity of methane release from them into the working face is summed up.
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已开发煤层定向井脱气研究
俄罗斯矿山进行脱气工作的技术,是根据半个世纪以来通过沿已开发煤层和相邻煤层向采空区钻孔来降低采空区甲烷丰度的方法和手段的经验而确定的。脱气及甲烷排放源参数经行业法规规范、科学论证,并在科学实用著作中发表。库兹涅茨克煤盆地和Vorkuta矿床的煤矿,主要是在开发一套含甲烷煤层的条件下,利用复杂的机械化面进行高生产率的煤炭开采,被选为研究对象:以S.M.基洛夫命名,以V.D. Yalevsky(以前的“Kotinskaya”)命名,Boldyrevsky煤层(指数24)和煤层52。煤矿瓦斯危害是由瓦斯排放量、甲烷-空气混合物爆炸、人员生命损失等因素共同决定的,是自然因素、开采因素、组织因素和主观因素共同影响的结果。开发一套含甲烷煤层时,瓦斯危险性的主要指标是开挖区甲烷绝对丰度。利用该方法预测了已开采煤层露天面向长壁及邻近煤层井底空间释放甲烷的强度。连续煤层暴露面受岩压卸荷作用下的甲烷释放量,采用类比法确定。实验证实了破碎煤中甲烷的释放。当工作面卸除相邻煤层时,总结了相邻煤层向工作面释放甲烷的强度。
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来源期刊
Bezopasnost'' Truda v Promyshlennosti
Bezopasnost'' Truda v Promyshlennosti Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
110
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