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塔河油田奥陶系碳酸盐岩油藏溶洞发育规律 被引量:18
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作者 徐微 陈冬梅 +2 位作者 赵文光 蔡忠贤 林忠民 《海相油气地质》 2011年第2期34-41,共8页
塔河油田奥陶系碳酸盐岩缝洞型储层为该区最重要的油气生产层段。依据地质岩心(屑)、录井、钻井、测井、地震等多种资料,运用由点到线再到面的方法,探讨了塔河油田奥陶系碳酸盐岩油藏的溶洞发育规律。由区内溶洞充填砂泥岩的伊利石K-Ar... 塔河油田奥陶系碳酸盐岩缝洞型储层为该区最重要的油气生产层段。依据地质岩心(屑)、录井、钻井、测井、地震等多种资料,运用由点到线再到面的方法,探讨了塔河油田奥陶系碳酸盐岩油藏的溶洞发育规律。由区内溶洞充填砂泥岩的伊利石K-Ar同位素定年,得出其形成时间在369.33~451.90Ma,古溶洞的形成时间应该早于该时段或与该时段同时,即加里东中晚期—海西早期。溶洞的发育受控于古地貌,存在三个纵向溶洞带。岩溶水输入方式的不同,使得塔河地区溶洞的平面分布分区性较强。北部区奥陶系鹰山组和一间房组中的岩溶水为面状输入方式,南部有上奥陶统隔水层覆盖的区,鹰山组和一间房组中岩溶水为侧向输入方式,岩溶水的出口位置位于断裂带附近,尤其是断裂带与断裂带相交的部位。塔河油田北部和南部的岩溶水系统基本为一个统一的系统。建立了该区大气淡水岩溶模式。 展开更多
关键词 塔河油田 奥陶系 碳酸盐岩储层 溶洞性储层 储层特征 储层成因模式
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Numerical simulation of the dual laterolog for carbonate cave reservoirs and response characteristics 被引量:12
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作者 Tan Mao-Jin Gao Jie +1 位作者 Wang Xiao-Chang Zhang Song-Yang 《Applied Geophysics》 SCIE CSCD 2011年第1期79-85,96,共8页
Cave carbonate formations are characterized by heterogeneity, which makes electrical log prediction difficult. It is currently important to know how to use the dual laterolog to accurately identify and quantitatively ... Cave carbonate formations are characterized by heterogeneity, which makes electrical log prediction difficult. It is currently important to know how to use the dual laterolog to accurately identify and quantitatively evaluate caves. Using numerical simulation to calculate electrical log responses can provide a theoretical basis for cave identification and evaluation. In this paper, based on the dual laterolog principles, we first study different size spherical cave models using the finite element method (FEM), determine a relation between resistivity and cave filling after comprehensively studying the log responses of cave models with different filling material, and finally study the dual laterolog responses on caves filled with shale, limestone, conglomerate, and thin laminated formation of sand and shale. The numerical results provide a theoretical basis for identification and evaluation of carbonate cave reservoirs. 展开更多
关键词 carbonate cave reservoirs dual laterolog finite element method (FEM) numerical simulation.
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