基于CT扫描的煤岩孔裂隙表征Characterization of pores and fractures of coal based on CT scan
李相臣,陈德飞,康毅力,孟祥娟
LI Xiangchen,CHEN Defei,KANG Yili,MENG Xiangjuan
摘要(Abstract):
煤岩中孔隙与裂隙的结构、形态等特征直接影响煤层气在煤层中的聚集和运移。为对煤岩中孔裂隙类型及孔裂隙的空间分布进行表征,选取宁武盆地中煤阶煤岩,利用微CT扫描技术对煤岩进行扫描获得CT图像,运用FDK算法重建煤岩的灰度图像并基于宏观孔隙度值对灰度图像进行二值化分割,对CT图像中的微裂纹目标进行了识别;利用CT扫描获得的图像依据煤岩中基质、孔裂隙及矿物组分均表现出不同的CT值分布,实现了煤岩中孔裂隙的三维建模,对煤岩中孔裂隙的尺度以及空间分布进行综合表征。研究成果为后期研究煤岩中气体吸附–解吸–渗流的多尺度过程奠定了基础。
The accumulation and migration of coalbed methane in coal seams is affected by the characteristics of structure and shape of pores and fractures in coal. To characterize the type and spatial distribution of the pores and fractures in coal, the paper took the medium rank coal from Ningwu basin, used micro-CT scanning technology to scan to get CT images and adopted the FDK algorithm for construction of grayscale images, then based on experimental porosity, used binary segmentation to cut the grayscale images and recognizing the micro-fractures in CT image. By using the images obtained by micro-CT scanning technology and based on the coal matrix, pores(fractures) and mineral components showed a different distribution of CT values and finally the 3D modeing of pores and fractures of coal was realized, and the dimension and the spatial distribution of pores and fractures were characterized comprehensively. The research results have great contribution to research the process of gas adsorption–desorption and seepage in coal.
关键词(KeyWords):
煤岩;CT扫描;孔裂隙;灰度值;三维重构
coal;CT scan;pores and fractures;gray value;3D reconstruction
基金项目(Foundation): 国家重点基础研究发展计划(973计划)课题(2010CB226705);; 国家科技重大专项课题(2011ZX05005-006-008HZ)~~
作者(Author):
李相臣,陈德飞,康毅力,孟祥娟
LI Xiangchen,CHEN Defei,KANG Yili,MENG Xiangjuan
参考文献(References):
- [1]张慧.煤孔隙的成因类型及其研究[J].煤炭学报,2001,26(1):40–44.ZHANG Hui.Genetical type of proes in coal reservoir and its research significance[J].Journal of China Coal Society,2001,26(1):40–44.
- [2]曹树刚,李勇,刘延保,等.深孔控制预裂爆破对煤体微观结构的影响[J].岩石力学与工程学报,2009,28(4):673–678.CAO Shugang,LI Yong,LIU Yanbao,et al.Influence of deep-hole controlled pre-cracking explosion on microstructure of coal[J].Chinese Journal of Rock Mechanics and Engineering,2009,28(4):673–678.
- [3]赵兴龙,汤达祯,许浩,等.煤变质作用对煤储层孔隙系统发育的影响[J].煤炭学报,2010,35(9):1506–1511.ZHAO Xinglong,TANG Dazhen,XU Hao,et al.Effect of coal metamorphic process on pore system of coal reservoirs[J].Journal of China Coal Society,2010,35(9):1506–1511.
- [4]宫伟力,安里千,赵海燕,等.基于图像描述的煤岩裂隙CT图像多尺度特征[J].岩土力学,2010,31(2):371–381.GONG Weili,AN Liqian,ZHAO Haiyan,et al.Multiple scale characterization of CT image for coal rock fractures based on image description[J].Rock&Soil Mechanics,2010,31(2):371–381.
- [5]G?RDAL G,YAL?IN M N.Pore volume and surface area of the Carboniferous coals from the Zonguldak basin(NW Turkey)and their variations with rank and maceral composition[J].International Journal of Coal Geology,2001,48(1):133–144.
- [6]宫伟力,张艳松,安里千.基于图像分割的煤岩孔隙多尺度分形特征[J].煤炭科学技术,2008,36(6):28–32.GONG Weili,ZHANG Yansong,AN Liqian.Multiple-scale fractal features of coal and rock porosity based on image segmentation[J].Coal Science&Technology,2008,36(6):28–32.
- [7]宫伟力,李晨.煤岩结构多尺度各向异性特征的SEM图像分析[J].岩石力学与工程学报,2010,19(4):685–686.GONG Weili,LI Chen.Multi-scale and anisotropic characterization of coal structure based on SEM image analysis[J].Chinese Journal of Rock Mechanics&Engineering,2010,19(4):685–686.
- [8]张慧,王晓刚.煤的显微构造及其储集性能[J].煤田地质与勘探,1998,26(1):33–36.ZHANG Hui,WANG Xiaogang.Micro-strcutures of coal and their reservoir property[J].Coal Geology&Exploration,1998,26(1):33–36.
- [9]张红日,王传云.突出煤的微观特征[J].煤田地质与勘探,2000,28(4):31–33.ZHANG Hongri,WANG Chuanyun.Microscopic characteristics of burst coal seams[J].Coal Geology&Exploration,2000,28(4):31–33.
- [10]CAI Yidong,LIU Dameng,PAN Zhejun,et al.Pore structure and its impact on CH4 adsorption capacity and flow capability of bituminous and subbituminous coals from northeast China[J].Fuel,2013,103:258–268.
- [11]任庚坡,张超群,姜秀民,等.大同煤的表面微观结构分析[J].燃烧科学与技术,2007,13(3):265–268.REN Gengpo,ZHANG Chaoqun,JIANG Xiumin,et al.Analysis of surface area and pore structure of Datong coal[J].Journal of Combustion Science&Technology,2007,13(3):265–268.
- [12]YAO Yanbin,LIU Dameng,TANG Dazhen.Fractal characterization of seepage-pores of coals from China:An investigation on permeability of coals[J].Computers&Geosciences,2009,35(6):1159–1166.
- [13]靳钟铭,康天合,弓培林,等.煤体裂隙分形与顶煤冒放性的相关研究[J].岩石力学与工程学报,1996,15(2):143–149.JIN Zhongming,KANG Tianhe,GONG Peilin,et al.Interrelation of crack fractal to top coal caving and drawing characteristics[J].Chinese Journal of Rock Mechanics and Engineering,1996,15(2):143–149.
- [14]LI Song,TANG Dazhen,XU Hao,et al.Advanced characterization of physical properties of coals with different coal structures by nuclear magnetic resonance and X-ray computed tomography[J].Computers&Geosciences,2012,48:220–227.
- [15]张占涛,王黎,张睿,等.煤的孔隙结构与反应性关系的研究进展[J].煤炭转化,2005,28(4):62–68.ZHANG Zhantao,WANG Li,ZHANG Rui.Research development correlation between pore structure and reactivity of coal[J].Coal Conversion,2005,28(4):62–68.
- [16]YAO Yanbin,LIU Dameng,CHE Yao,et al.Non-destructive characterization of coal samples from China using microfocus X-ray computed tomography[J].International Journal of Coal Geology,2009,80(2):113–123.
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