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延长陆相页岩微观孔隙结构分析 被引量:18
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作者 吴春燕 程玉群 +3 位作者 沈英 王宁 贾朋涛 张红强 《非常规油气》 2016年第3期21-26,共6页
页岩储层孔隙结构非常复杂,对研究手段和分析技术要求较高。为了有效地开展页岩气储层评价,精细描述页岩孔隙结构,采用场发射扫描电镜、高压压汞实验和低温氮气吸附实验等多种手段对陆相页岩孔隙结构进行了研究,对孔隙类型及形态进行了... 页岩储层孔隙结构非常复杂,对研究手段和分析技术要求较高。为了有效地开展页岩气储层评价,精细描述页岩孔隙结构,采用场发射扫描电镜、高压压汞实验和低温氮气吸附实验等多种手段对陆相页岩孔隙结构进行了研究,对孔隙类型及形态进行了直观描述、计算孔隙结构参数、分析页岩孔径分布及孔隙结构对页岩气吸附能力和渗流能力的影响。研究结果表明,延长陆相页岩孔隙类型复杂,以粒间孔和层理(层间缝)最为发育;孔喉连通性较差,进汞饱和度低,但退汞效率相对较高;页岩孔隙的孔径分布广泛,以微孔和过渡孔为主,其中,孔径小于30nm的微孔和过渡孔是页岩孔容和比表面积的主要贡献者,为页岩气吸附和存储提供了主要场所,但较少的中孔和大孔不利于页岩气的渗流和开采。 展开更多
关键词 延长陆相页岩 微观孔隙结构 扫描电镜 高压压汞 氮气吸附
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利用微米X射线显微镜研究陆相延长组页岩孔隙结构特征 被引量:6
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作者 王羽 汪丽华 +1 位作者 王建强 王彦飞 《岩矿测试》 CAS CSCD 北大核心 2020年第4期566-577,共12页
页岩孔隙结构是决定储层储集与运移能力的关键,对完善我国陆相页岩气产能评估方法和压裂技术具有重要意义。本文选取鄂尔多斯盆地陆相延长组7段页岩,利用氩离子抛光-扫描电镜和微米X射线显微镜方法研究其孔隙结构特征与三维空间分布特... 页岩孔隙结构是决定储层储集与运移能力的关键,对完善我国陆相页岩气产能评估方法和压裂技术具有重要意义。本文选取鄂尔多斯盆地陆相延长组7段页岩,利用氩离子抛光-扫描电镜和微米X射线显微镜方法研究其孔隙结构特征与三维空间分布特征。扫描电镜结果表明,延长7段页岩中主要发育粒间孔(300~600nm)和微裂缝,是页岩气的主要储集空间。微裂缝多由黏土矿物沉淀形成,以平直状为主,易引发井壁坍塌等严重问题。有机孔发育较少,一般与有机黏土矿物共存,绝大部分有机质呈致密状。微米X射线显微镜测试进一步表明,长7段页岩在三维空间具有微米级纹层结构,其中有机质纹层厚10~20μm,揭示了延长组7段页岩层具有较强塑性,不利于水平压裂。该研究成果将为构建延长7段页岩气渗流模型、改进压裂技术提供重要数据支持。 展开更多
关键词 微米X射线显微镜 氩离子抛光 微纳孔隙 三维结构 纹层结构 陆相延长页岩
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Petrophysical characteristics of shale oil reservoirs in the Yanchang Formation,Ordos Basin
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作者 Zhu Si-Xin An Li-Ming +2 位作者 Li Yong-Kang Zhang Xiao-Dong and Meng Fan-Ke 《Applied Geophysics》 SCIE CSCD 2022年第3期311-324,470,共15页
The mediate-low maturity continental shale oil reservoir in the 7th member of the Triassic Yanchang Formation is one of the main zones for shale oil exploration and development in Ordos Basin,China,but the seismic res... The mediate-low maturity continental shale oil reservoir in the 7th member of the Triassic Yanchang Formation is one of the main zones for shale oil exploration and development in Ordos Basin,China,but the seismic response mechanism of the reservoir remains unclear.Therefore,developing a new method for“sweet spot”seismic prediction combined with rock physics is necessary.To determine the petrophysical characteristics of continental shale in the 7th member of the Yanchang Formation in the study area,a series of tests,such as a systematic acoustic test on shale oil samples in the target segment,X-ray diffraction analyses,analysis of thin optical sections,and scanning electron microscopy,were conducted to summarize the patterns of seismic elastic property changes.Results show that the shale oil samples of the 7th member of the Yanchang Formation are primarily composed of lithic feldspar sandstone with feldspar dissolution and intergranular pores,widespread micron pores,and throats.Such composition indicates a positive correlation between porosity and permeability.The velocities of the samples are affected by their porosity and mineral composition.Velocity increases with the increase of the calcium content and decreases with the increase of the clay content,indicating a negative correlation with the porosity and total organic carbon(TOC)content on the condition of the same rock structure(quartz skeleton or clay skeleton).The elastic properties of the rock are horizontally isotropic(T1 medium),and the velocity is vertically anisotropic.In addition,the directional arrangement of clay controls the anisotropy of rock velocity.TOC is mainly distributed in the primary intergranular pores,and it has no contribution to the anisotropy of rock velocity.The results of this paper can provide a reference for the seismic prediction of continental shale oil reservoirs in the 7th member of the Yanchang Formation. 展开更多
关键词 Yanchang Formation petrophysical characteristics continental shale ANISOTROPY
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