期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
鄂尔多斯盆地陆相页岩微观孔隙类型及对页岩气储渗的影响 被引量:87
1
作者 杨超 张金川 唐玄 《地学前缘》 EI CAS CSCD 北大核心 2013年第4期240-250,共11页
为深入研究鄂尔多斯陆相页岩储层微观孔隙特征及成藏地质意义,特选取了延长矿区本溪组、山西组、延长组长7、长9段的页岩钻井岩心进行了氩离子抛光扫描电镜实验、压汞实验、氦气吸脱附实验以及相关的地化等实验,实现了对孔隙特征从电镜... 为深入研究鄂尔多斯陆相页岩储层微观孔隙特征及成藏地质意义,特选取了延长矿区本溪组、山西组、延长组长7、长9段的页岩钻井岩心进行了氩离子抛光扫描电镜实验、压汞实验、氦气吸脱附实验以及相关的地化等实验,实现了对孔隙特征从电镜下直观观察到吸脱附实验间接定性反映,以及对孔隙结构从宏孔到微孔的定量测试。研究结果表明,鄂尔多斯陆相页岩存在粒间孔、粒内孔、晶间孔、溶蚀孔、有机孔及微裂缝共6种微观孔隙类型。其中粒间孔、粒内孔普遍存在,且以黏土矿物聚合体粒间孔和层间粒内孔最为发育,粒间孔孔径多在微纳米级,粒内孔多在几十个纳米内;晶间孔和溶蚀孔仅少量存在于某些特定矿物中,孔径多为纳米级;有机孔相对不发育,以赋存于黏附结合态有机质中且呈凹坑状、片麻状有机孔为特征,孔径多在20nm以内;微裂缝少量存在,多为脆性矿物裂开缝或大型贯通式裂缝。另外,分析得出黏土矿物集合体粒间孔和层间粒内孔对研究区页岩气的赋存和运移贡献最大且是储层各向异性(渗透性)的主要控制因素,晶间孔及溶蚀孔次之;有机孔因相对不发育,可能贡献较小。同时微裂缝的影响不容忽视,是沟通宏孔与中孔的主要微通道。 展开更多
关键词 鄂尔多斯盆地 陆相页岩 氩离子抛光扫描电镜 氦气吸脱附 孔隙类型 页岩储渗
下载PDF
Permeability Estimation of Shale Oil Reservoir with Laboratory-derived Data: A Case Study of the Chang 7 Member in Ordos Basin
2
作者 Zhang Lin Gao Li +3 位作者 Ba Jing Zhang Meng-Bo José M.Carcione Liu Wei-Hua 《Applied Geophysics》 SCIE CSCD 2024年第3期440-455,616,共17页
The shale oil reservoir within the Yanchang Formations of Ordos Basin harbors substantial oil and gas resources and has recently emerged as the primary focus of unconventional oil and gas exploration and development.D... The shale oil reservoir within the Yanchang Formations of Ordos Basin harbors substantial oil and gas resources and has recently emerged as the primary focus of unconventional oil and gas exploration and development.Due to its complex pore and throat structure,pronounced heterogeneity,and tight reservoir characteristics,the techniques for conventional oil and gas exploration and production face challenges in comprehensive implementation,also indicating that as a vital parameter for evaluating the physical properties of a reservoir,permeability cannot be effectively estimated.This study selects 21 tight sandstone samples from the Q area within the shale oil formations of Ordos Basin.We systematically conduct the experiments to measure porosity,permeability,ultrasonic wave velocities,and resistivity at varying confining pressures.Results reveal that these measurements exhibit nonlinear changes in response to effective pressure.By using these experimental data and effective medium model,empirical relationships between P-and S-wave velocities,permeability and resistivity and effective pressure are established at logging and seismic scales.Furthermore,relationships between P-wave impedance and permeability,and resistivity and permeability are determined.A comparison between the predicted permeability and logging data demonstrates that the impedance–permeability relationship yields better results in contrast to those of resistivity–permeability relationship.These relationships are further applied to the seismic interpretation of shale oil reservoir in the target layer,enabling the permeability profile predictions based on inverse P-wave impedance.The predicted results are evaluated with actual production data,revealing a better agreement between predicted results and logging data and productivity. 展开更多
关键词 shale oil reservoir P-wave impedance RESISTIVITY PERMEABILITY rock physics experiment
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部