Comprehensive characterization of pore structure in coal seams with abnormal gas emission in deep close range coal seam clusters
袁安营杨晓璐侯俊领付光胜
YUAN Anying;YANG Xiaolu;HOU Junling;FU Guangsheng
安徽理工大学 深部煤矿采动响应与灾害防控国家重点实验室攀枝花学院 钒钛学院中国冶金地质总局青岛地质勘查院
煤与瓦斯突出事故一直是煤矿安全生产中的重大问题,煤体中孔裂隙是瓦斯吸附与运移的主要场所,研究孔裂隙结构特征对瓦斯灾害的防控治理具有重大意义。以淮南矿区谢桥矿瓦斯异常涌出煤层煤体为研究对象,对比未发生事故区域及邻近煤层煤体,开展扫描电镜(SEM)、低场核磁共振(NMR)等试验研究,对煤体孔裂隙类型、孔隙连通性、孔径分布、有效孔隙率及渗透率等参数进行研究,探讨煤体孔隙结构对瓦斯吸附及运移的影响。结果表明:煤体孔隙结构必将影响其渗透性,煤体内部碎粒孔大量发育及矿物充填情况严重时不利于流体运移;异常煤层与邻近煤层饱和水煤样核磁共振时间
Coal and gas outburst accidents have always been a major problem in coal mine safety production. Pores and fissures in coal are the main places for gas adsorption and migration. It is of great significance to study the structural characteristics of pores and fissures for the prevention and control of gas disasters. Taking the abnormal gas emission coal seam of Xieqiao Coal Mine in Huainan Mining Area as the research object, Compares the areas without accidents and adjacent coal seams conducting experimental studies such as scanning electron microscopy (SEM) and low field nuclear magnetic resonance (NMR) to study the parameters of coal pore and fracture types, pore connectivity, pore size distribution, effective porosity, and permeability, and explores the influence of coal pore structure on gas adsorption and migration. The results show that the internal pore structure of coal body will affect its permeability, and the development of a large number of granular pores in coal body and the serious filling of minerals are not conducive to fluid migration. The
瓦斯涌出异常孔裂隙特征有效孔隙率瓦斯运移渗透率
abnormal gas emission;pore and fissure characteristics;effective porosity;gas migration;permeability
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