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机构地区:[1]吕梁学院矿业工程系,山西吕梁033000 [2]太原理工大学矿业工程学院,山西太原030024
出 处:《煤矿安全》2017年第1期141-143,148,共4页Safety in Coal Mines
摘 要:运用FLAC^(3D)模拟软件,对大黄山煤矿的急倾斜厚煤层开采过程进行卸压瓦斯抽采的数值模拟,得出两层煤的应力分布规律及顶底板的位移变化规律。对中大槽煤层工作面底板煤岩层的受力特性进行分析,认为有必要对卸压区域煤体进行瓦斯预抽和卸压瓦斯抽采。根据现场实测数据得出,接替工作面残余瓦斯压力为0.21 MPa,残余瓦斯含量为2.873 m^3/t,可解析瓦斯量为0.563 m^3/t,可判定该区域内瓦斯抽采效果达标。By using FLAC^(3D) simulation software,the numerical simulation of pressure relief gas drainage was carried out in steeply inclined thick coal seam mining process of Dahuangshan Coal Mine,and the stress distribution and displacement laws of roof and floor of two layers of coal was obtained. We analyze the coal and rock stress characteristics of the coal seam floor in the middle and large slots working face. It is necessary to carry out gas pre-extraction and pressure relief gas drainage. According to the measured data in field,the residual gas pressure of the replacing working surface is 0. 21 MPa,the residual gas content is 2. 873 m^3/t,and the amount of gas can be desorbed is 0. 563 m^3/t,which can determine that the gas drainage effect in this area is up to the standard.
关 键 词:急倾斜厚煤层 卸压瓦斯 卸压开采 FLAC3D 数值模拟
分 类 号:TD712[矿业工程—矿井通风与安全]
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