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利用多尺度CT成像表征致密砂岩微观孔喉结构 被引量:170
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作者 白斌 朱如凯 +5 位作者 吴松涛 杨文静 Jeff Gelb allen gu 张响响 苏玲 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2013年第3期329-333,共5页
为全面表征致密储集层微观孔喉分布及结构特征,对鄂尔多斯盆地上三叠统延长组致密砂岩储集层样品进行纳米—微米多尺度CT三维成像研究。首先利用低分辨率微米尺度X-CT扫描获取直径为2.54 cm岩心柱内部微米级别孔喉结构特征,然后根据微... 为全面表征致密储集层微观孔喉分布及结构特征,对鄂尔多斯盆地上三叠统延长组致密砂岩储集层样品进行纳米—微米多尺度CT三维成像研究。首先利用低分辨率微米尺度X-CT扫描获取直径为2.54 cm岩心柱内部微米级别孔喉结构特征,然后根据微孔分布特征,制备多个直径为65μm的样品进行高分辨率纳米尺度扫描,重构纳米级微孔三维结构模型,最终计算出样品的孔隙度和渗透率。在微米尺度下,孔喉大小不一,直径为5.4~26.0μm,呈孤立状,局部呈条带状;在纳米尺度下,微孔直径主要为0.4~1.5μm,纳米级微孔数量增多,孔喉为管状、球状,分布于矿物颗粒(晶体)内部或表面。纳米级球状微孔连通性较差,三维空间呈孤立状,多仅作为储集空间,而纳米级短管状微孔具有一定的连通性,与微米级管状微孔和邻近孤立球状纳米微孔具有一定连通性,兼具喉道与孔隙的双重功能。数值计算样品渗透率为0.843×10 3μm2,孔隙度为10%。 展开更多
关键词 X射线CT三维成像 致密砂岩储集层 微观孔喉 纳米—微米级别
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Non Destructive 3D, 4D Microscopy and Mineral Phase Characterization in Industrial Minerals, Composites to Construction Materials
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作者 S H Lau Arno Merkle +3 位作者 Susan Candell Sylvia Yun allen gu Wenbing Yun 《矿物学报》 CAS CSCD 北大核心 2013年第S1期77-77,共1页
Conventional electron and optical microscopy techniques require the sample to be sectioned, polished or etched to expose the internal surfaces for imaging. However, such sample preparation techniques have traditionall... Conventional electron and optical microscopy techniques require the sample to be sectioned, polished or etched to expose the internal surfaces for imaging. However, such sample preparation techniques have traditionally prevented the observation of the same sample over time, under realistic three-dimensional geometries and in an environment representative of real-world operating conditions. X-ray microscopy (XRM) is a rapidly emerging technique that enables non-destructive evaluation of buried structures within hard to soft materials in 3D, requiring little to no sample preparation. Furthermore in situ and 4D quantification of microstructural evolution under controlled environment as a function of time, temperature, chemistry or stress can be done repeatable on the same sample, using practical specimen sizes ranging from tens of microns to several cm diameter, with achievable imaging resolution from submicron to 50 nm. Many of these studies were reported using XRM in synchrotron beamlines. These include crack propagation on composite and construction materials; corrosion studies; microstructural changes during the setting of cement; flow studies within porous media to mention but a few. 展开更多
关键词 3D and 4D MICROSCOPY in SITU CHARACTERIZATION MINERAL phase DISCRIMINATION Dual Energy X-ray Tomography industrial MINERALS gemstone construction materials
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Rapid Large Volume 3D Mineral Processing and Liberation Characterization Technique to Sub Micron Resolution
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作者 S H Lau Susan Candell +2 位作者 Sylvia Yun allen gu YUN Wenbing 《矿物学报》 CAS CSCD 北大核心 2013年第S1期78-78,共1页
We describe a novel lab based X-ray computed tomography system based on the architecture of X-ray Microscopes (XRM) used in synchrotron radiation facilities to be adapted for mineral processing and mineral liberation ... We describe a novel lab based X-ray computed tomography system based on the architecture of X-ray Microscopes (XRM) used in synchrotron radiation facilities to be adapted for mineral processing and mineral liberation analysis. As this is a tomographic technique performed with an XRM, it is non-destructive and does not require complex preparation of polished sections typical of SEM-EDS techniques (such as MLA and QEMSCAN). It complements these existing techniques by providing 3D information and mineral liberation of multi-phase particles with much larger sample volume statistics but at a fraction of the time. In several applications, the technique is superior. These include the characterization of tailing loss in precious minerals; the characterization of porosity, particle size distribution, crack and pore network analysis during comminution, heap leaching and for texture and exposure/lock class analysis for floatation. 展开更多
关键词 MINERAL LIBERATION analysis (MLA) 3D MINERAL processing X-ray microscopy (XRM) COMPUTED TOMOGRAPHY precious base and industrial MINERALS
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