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利用致密砂岩储层电导率参数求取渗透率 被引量:4
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作者 尹帅 丁文龙 +4 位作者 单钰铭 周文 房克栋 赵鑫 张惠南 《岩性油气藏》 CSCD 北大核心 2016年第6期117-124,共8页
致密砂岩储层具有较强的非均质性,用常规方法难以实现对其渗透率的有效预测。为了解决该问题,同时考虑岩石电导率、颗粒电导率、地层水电导率及胶结指数等建立了致密砂岩储层渗透率模型,并通过对致密砂岩渗透率的数值分析,探讨了这些因... 致密砂岩储层具有较强的非均质性,用常规方法难以实现对其渗透率的有效预测。为了解决该问题,同时考虑岩石电导率、颗粒电导率、地层水电导率及胶结指数等建立了致密砂岩储层渗透率模型,并通过对致密砂岩渗透率的数值分析,探讨了这些因素对致密砂岩渗透率的影响,建立了相关解释图版。研究表明:1致密砂岩渗透率随着岩石电导率的增大而增大。当岩石电导率较小时,其对渗透率的影响较小;反之,影响较大。2致密砂岩渗透率随着颗粒电导率的增大而减小,但颗粒电导率对致密砂岩渗透率的影响并不大。与颗粒电导率相比,岩石电导率对致密砂岩渗透率的影响更大。3致密砂岩渗透率随着胶结指数的增大而增大。当胶结指数较小时,其对致密砂岩渗透率的影响较小;反之,影响较大。将该方法应用于川西地区三叠系致密砂岩储层渗透率的预测,取得了较好的应用效果,证明了该方法的有效性。研究成果对致密砂岩储层评价及测井评价等均具有一定的参考价值。 展开更多
关键词 致密砂岩 岩石电 颗粒电 地层水电导率 胶结指数 渗透
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Research of the electrical anisotropic characteristics of water-conducting fractured zones in coal seams 被引量:7
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作者 Su Ben-Yu Yue Jian-Hua 《Applied Geophysics》 SCIE CSCD 2017年第2期216-224,322,共10页
Water flooding disasters are one of the five natural coal-mining disasters that threaten the lives of coal miners. The main causes of this flooding are water-conducting fractured zones within coal seams. However, when... Water flooding disasters are one of the five natural coal-mining disasters that threaten the lives of coal miners. The main causes of this flooding are water-conducting fractured zones within coal seams. However, when resistivity methods are used to detect water-conducting fractured zones in coal seams, incorrect conclusions can be drawn because of electrical anisotropy within the water-conducting fractured zones. We present, in this paper, a new geo-electrical model based on the geology of water-conducting fractured zones in coal seams. Factors that influence electrical anisotropy were analyzed, including formation water resistivity, porosity, fracture density, and fracture surface roughness, pressure, and dip angle. Numerical simulation was used to evaluate the proposed electrical method. The results demonstrate a closed relationship between the shape of apparent resistivity and the strike and dip of a fracture. Hence, the findings of this paper provide a practical resistivity method for coal-mining production. 展开更多
关键词 water-conducting fractured zones in coal seams coalfield goaf electrical anisotropy surface roughness formation water resistivity formation pressure
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