Microscopic pore of sandstone in Longde Coal Mine based on FHH fractal theory
WANG Xu;YIN Shangxian;CAO Min;XIA Xiangxue;LIU Dewang;ZHANG Jinfu;WU Chuanshi;LI Qixing;WANG Haorui;LU Rui
西部煤炭资源以侏罗纪煤田为主,侏罗系煤系地层普遍受到顶板复合水的影响,因此,顶板砂岩含水层的富水性评价是矿井安全开采的前提。以隆德煤矿为研究对象,通过氮气吸附试验分析了砂岩孔隙结构特征;基于FHH分形模型,分析了分形维数与岩石组成、孔隙结构、埋深等参数的相关性。研究结果表明:隆德煤矿砂岩具有较强的非均质性,分形维数
The coal resources in western China are mainly Jurassic coal fields, and the Jurassic coal measure strata are generally affected by roof composite water, so the water-rich evaluation of roof sandstone aquifer is the premise of safe mining. Taking Longde Coal Mine as the research object, the pore structure characteristics of sandstone were analyzed through nitrogen adsorption test and whole rock analysis. Based on FHH fractal model, the correlation between fractal dimension and rock composition, pore structure and burial depth was analyzed. The results show that the sandstone in Longde Coal Mine has strong heterogeneity, and the fractal dimension
fractal dimension;sandstone;Jurassic coal seam;FHH fractal model;water richness evaluation
主办单位:煤炭科学研究总院有限公司 中国煤炭学会学术期刊工作委员会