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地层电性质研究与电测井方法进展·之一 油层电性质研究与电法测井解释方法的进展 被引量:5
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作者 欧阳健 《石油科技论坛》 2010年第1期32-39,共8页
文章简要回顾了20世纪90年代以前的电测井解释方法,概括介绍了近十年中国石油集团针对低幅度油藏—低电阻油层与前白垩系特低渗透砂岩油层电性质研究及电法测井解释方法的进展,包括中浅层泥质砂岩黏土附加导电、钻井液侵入油、水层双侧... 文章简要回顾了20世纪90年代以前的电测井解释方法,概括介绍了近十年中国石油集团针对低幅度油藏—低电阻油层与前白垩系特低渗透砂岩油层电性质研究及电法测井解释方法的进展,包括中浅层泥质砂岩黏土附加导电、钻井液侵入油、水层双侧向与双感应测井的响应研究、复杂孔隙类型的特低渗透砂岩电性质研究以及各类油藏的测井饱和度—电阻率分布规律研究进展等。这些研究和进展表明近十年中国石油勘探中电测井评价油层(藏)的重要作用。 展开更多
关键词 油层电性质 测井 研究进展
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Pore structure effect on reservoir electrical properties and well logging evaluation 被引量:5
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作者 边环玲 关雎 +2 位作者 毛志强 鞠晓东 韩桂琴 《Applied Geophysics》 SCIE CSCD 2014年第4期374-383,508,共11页
The reservoir pore structure controls the reservoir quality and resistivity response of hydrocarbon-bearing zones and thus, critically affects logging interpretation. We use petrophysical data in three types of reserv... The reservoir pore structure controls the reservoir quality and resistivity response of hydrocarbon-bearing zones and thus, critically affects logging interpretation. We use petrophysical data in three types of reservoir with different pore structure characteristics to show that the complexity of pore structure had a significant effect on the effective porosity and permeability regardless of geological factors responsible for the formation of pore structure. Moreover,, the distribution and content of conductive fluids in the reservoir varies dramatically owing to pore structure differences, which also induces resistivity variations in reservoir rocks. Hence, the origin of low-resistivity hydrocarbon-bearing zones, except for those with conductive matrix and mud filtrate invasion, is attributed to the complexity of the pore structures. Consequently, reservoir-specific evaluation models, parameters, and criteria should be chosen for resistivity log interpretation to make a reliable evaluation of reservoir quality and fluids. 展开更多
关键词 pore structure reservoir quality RESISTIVITY low-resistivity hydrocarbon-bearing zone log evaluation
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Acoustic-electrical properties and rock physics models for shale-oil formations:prediction of reservoir properties of interbedded sandstone and shale layers
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作者 Pang Meng-Qiang Ba Jing +2 位作者 Wu Chun-Fang Carcione José Maria Müller Tobias 《Applied Geophysics》 SCIE CSCD 2022年第4期485-502,603,共19页
In recent years,the Yanchang shale-oil formations of the Ordos Basin are rich in reserves with complex lithology and structure characteristics,low porosity and low permeability,and weak anomalies for oil and water dis... In recent years,the Yanchang shale-oil formations of the Ordos Basin are rich in reserves with complex lithology and structure characteristics,low porosity and low permeability,and weak anomalies for oil and water discriminations,have been the key targets of unconventional oil/gas resource exploration and development in the relevant areas.The joint acoustic-electrical(AE)properties can be used to interpret reservoir lithology,mineralogy,pore structure,and fluid saturation.To conduct tests of thin section analysis,X-ray diff raction,and ultrasonic and electrical experiments at diff erent pressures and saturation degrees,cores from the shale-oil formations in the Q area of the basin are collected.The variations in AE properties with respect to clay content,porosity,pressure(microfracture),and saturation are analyzed.The experimental results indicate that the rock physics behaviors of sandstones with diff erent clay contents vary significantly.The AE properties of clean sandstones are basically dependent on the microfractures(pressure),while for muddy sandstones,the clay content is an important factor affecting the responses.The target reservoir consists of interbedded sandstone and shale layers.The AE equivalent medium equations and the Gurevich theory are applied to establish the joint models for the diff erent lithologies and simulate the variations in AE properties with respect to fluid type,pore structure,and mineral components.The three-dimensional joint templates of clean and muddy sandstones,as well as shale,are developed based on the elastic and electrical attributes and then calibrated using the experimental and well-log data.The reservoir properties are estimated with the templates and validated by the log data.The results indicate that the joint templates based on lithology characteristics can eff ectively characterize the properties of interbedded sandstone and shale layers.Furthermore,the combined application of AE data provides more beneficial information for the assessment of rock properties,leading to precise estimates that conform with the actual formation conditions. 展开更多
关键词 shale-oil formations acoustic-electrical(AE)properties interbedded layers clay content pore structure rock physics model
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