页岩油层的声学-电性质和岩石物理模型:互层砂岩和页岩层储层性质预测

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Applied Geophysics Pub Date : 2023-03-13 DOI:10.1007/s11770-022-0949-z
Meng-Qiang Pang, Jing Ba, Chun-Fang Wu, José Maria Carcione, Tobias Müller
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引用次数: 0

摘要

鄂尔多斯盆地延长组页岩油储量丰富,岩性结构特征复杂,低孔低渗,油水判别异常弱,是近年来相关地区非常规油气资源勘探开发的重点目标。联合声电(AE)特性可用于解释储层岩性、矿物学、孔隙结构和流体饱和度。采集盆地Q区页岩油层岩心,在不同压力和饱和度下进行了薄片分析、x射线衍射、超声和电性实验。分析了粘土含量、孔隙度、压力(微裂缝)和饱和度对声发射特性的影响。实验结果表明,不同粘土含量砂岩的岩石物理行为存在显著差异。洁净砂岩的声发射特性基本取决于微裂缝(压力),而泥质砂岩的粘土含量是影响声发射响应的重要因素。目标储层由互层砂岩和页岩层组成。应用声发射等效介质方程和Gurevich理论建立了不同岩性的节理模型,模拟了流体类型、孔隙结构和矿物成分对声发射特性的影响。根据清洁砂岩、泥质砂岩和页岩的弹性和电性属性,建立三维节理模板,并利用实验数据和测井数据进行标定。利用模板对储层物性进行了估计,并通过测井资料进行了验证。结果表明,基于岩性特征的节理模板能有效表征砂岩与页岩互层的物性。此外,声发射数据的联合应用为岩石性质评估提供了更多有益的信息,从而得出符合实际地层条件的精确估计。
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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

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 diffraction, and ultrasonic and electrical experiments at different 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 different 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 different 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 effectively 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.

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来源期刊
Applied Geophysics
Applied Geophysics 地学-地球化学与地球物理
CiteScore
1.50
自引率
14.30%
发文量
912
审稿时长
2 months
期刊介绍: The journal is designed to provide an academic realm for a broad blend of academic and industry papers to promote rapid communication and exchange of ideas between Chinese and world-wide geophysicists. The publication covers the applications of geoscience, geophysics, and related disciplines in the fields of energy, resources, environment, disaster, engineering, information, military, and surveying.
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