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煤层电性参数测试及其与煤岩特性关系的研究 被引量:45
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作者 徐宏武 《煤炭科学技术》 CAS 北大核心 2005年第3期42-46,41,共6页
试验利用实验室测试、现场实测手段, 进行了大量参数测试, 并对煤岩层电性参数进行了研究, 研究了煤的变质程度、煤岩组分、湿度、温度、频率、瓦斯压力等对电性参数的影响及各向异性问题, 并指出与电磁法勘探最密切的电性参数是煤岩层... 试验利用实验室测试、现场实测手段, 进行了大量参数测试, 并对煤岩层电性参数进行了研究, 研究了煤的变质程度、煤岩组分、湿度、温度、频率、瓦斯压力等对电性参数的影响及各向异性问题, 并指出与电磁法勘探最密切的电性参数是煤岩层电阻率、相对介电常数和煤层对电磁波吸收系数。 展开更多
关键词 矿井电磁法勘探 电性参数 岩层电阻率 相对介电常数 吸收系数
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Permeability Estimation of Shale Oil Reservoir with Laboratory-derived Data: A Case Study of the Chang 7 Member in Ordos Basin
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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
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