综放工作面倾角影响卸压瓦斯运储区分形维数交叉融合研究及应用

Research and application of cross fusion of the influence of the inclination angle of fully mechanized caving face on the differential shape dimension of gas transport and storage

  • 摘要: 明晰煤炭开采过程中采空区卸压瓦斯的流动和聚集规律对于保障矿井安全作业具有重要意义。以新疆菏泽腾达煤矿B5煤层某主采工作面为研究背景,分析了不同煤层倾角下采动覆岩裂隙演化规律,确定了采空区卸压瓦斯运储区域范围,利用分形维数软件研究了卸压瓦斯运储区变化过程,构建了卸压瓦斯运储区倾角效应分形维数量化表征模型,揭示了倾角影响下瓦斯运储区交叉融合特征。结果表明:采动过程中上覆岩层离层量突变点1.87 m和贯通度突变点0.57可将裂隙场划分为瓦斯储集区、瓦斯运移区和覆岩压实区;通过研究不同区域的分形维数变化规律,掌握了瓦斯运储区随工作面推进呈现出“运储一体—区域显现—交叉融合—区域分离”的变化过程,在“区域形成—交叉融合—区域分离”阶段下的分形维数呈现出变化较小、剧烈变化和新发育3种状态;得到了煤层倾角影响下瓦斯运储区特征参数(区域高度、宽度)的大小,构建了瓦斯运储区倾角效应分形维数量化表征模型;依据现场实际情况计算出瓦斯运储区空间截面范围,对工作面卸压瓦斯抽采钻孔布置参数进行优化,优化后的卸压瓦斯抽采纯量和体积分数均有显著上升,验证了瓦斯运储区倾角效应分形维数量化表征模型及钻孔布置的合理性,研究结果可为倾斜厚煤层卸压瓦斯精准分域抽采提供参考。

     

    Abstract: It was of great significance to clarify the flow and accumulation law of depressed-pressure gas in goaf during coal mining to ensure the safety of mine operation. Using the main mining face of the B5 coal seam in Tengda Coal Mine, Heze, Xinjiang, China, as a case study, the evolution patterns of mining-induced fissures under different coal seam inclination angles were investigated. The transport and storage areas of pressure relief gas were determined. The variation process of pressure relief gas transport and storage areas were studied by using fractal dimension software. A fractal dimension quantitative characterization model of dip effect in gas transport and storage areas under pressure relief was established. The cross-fusion characteristics of gas transport and storage areas under the influence of dip angle were revealed. The results shown that the fracture field could be divided into gas reservoir area, gas migration area and overburden compaction area by the abrupt change point of 1.87 m and 0.57 of penetration degree during mining. By studying the fractal dimension changed law of different regions, it was understood that the gas transport and storage areas presented the change process of “transport and storage integration—regional display—cross fusion—regional separation” with the advance of the working face. In the stage of “region formation—cross fusion—region separation”, the fractal dimension presented three states: small change, drastic change and new development. The characteristic parameters (regional height and width) of gas transport and storage areas under the influence of dip angle were obtained. A fractal dimension quantitative representation model of dip effect in gas transport and storage areas was established. According to the actual situation on site, the space section range of gas transport and storage areas was calculated. The layout parameters of gas extraction borehole with pressure relief on the working face were optimized through the section range. After optimization, the extraction purity and volume fraction of pressure relief gas increased significantly. The fractal dimension quantitative characterization model of inclination effect in gas transport and storage areas and the rationality of borehole layout were verified. The research results could provide a reference for accurate and zonal extraction of pressure relief gas in inclined thick coal seam.

     

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