缝洞型碳酸盐岩油藏CO2注入方式及部位优化

Petroleum Geology and Recovery Efficiency(2017)

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Abstract
缝洞型碳酸盐岩油藏以大型溶洞、溶蚀孔洞及裂缝为主要储集渗流空间,连通方式复杂,非均质性强.CO2吞吐及CO2驱替可通过补充地层能量及溶解降粘作用来改善油田开发效果,是一种有效的开发方式.根据现场地质资料,设计并制作室内三维仿真物理模型以模拟典型缝洞油藏单元,通过室内实验模拟CO2吞吐及CO2驱替过程,分析生产动态,考察高、低部位井CO2吞吐的增产效果,并对比高、低部位井CO2吞吐与驱替对采出程度的影响,在此基础上分析缝洞型碳酸盐岩油藏注气替油机理.实验结果表明:利用底水与次生气顶间的相互作用及井位优势,高部位井CO2吞吐比低部位井CO2吞吐采收率高16.09%;利用吞吐与驱替过程中不同的气体控制范围,高、低部位井CO2吞吐采收率比CO2驱替采收率分别高8.07%和5.01%,CO2吞吐效果优于CO2驱替效果.
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Key words
fractured-vuggy carbonate reservoir,CO2 huff and puff,CO2 displacement,3D simulation model,oil recovery
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