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纸质出版:2024
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针对水驱油藏开发进入高含水阶段后,剩余油常富集在构造高部位或厚油层顶部,井网控制不到的问题,利用油藏自身特点注CO
2
形成气顶驱,可有效改善开发效果并实现CO
封存,但什么样的油藏适宜开展气顶驱尚待研究。通过剖析典型高含水油藏CO
气顶驱见效特征,分析气顶驱油过程中油气界面移动规律,结合数值模拟、物理模拟,以提高采收率幅度、换油率、到达极限气油比时间、存气率等为主要评价标准,研究地层倾角、原油密度、黏度、油藏封闭性、渗透率、水动力强弱等相关参数对CO
气顶驱油-封存效果的影响。按照到达极限气油比时提高采收率的幅度大小,评价各参数对驱油--封存效果的影响程度,确定高含水期油藏的CO
气顶驱油-封存筛选条件主要受油藏封闭性、地层倾角、原油黏度、油层渗透率及厚度影响,为拓展CO
驱应用范围提供了依据。
In the development of water-flooded oil fields entering the high water-cut stage
the remaining oil often accumulates at the top of structural high positions or thick oil layers
areas not effectively covered by the existing well network. Utilizing the intrinsic characteristics of the reservoir to inject CO
and form a gas cap drive can effectively improve development outcomes and achieve CO
sequestration. However
the suitability of specific reservoirs for gas cap drive development requires further study. This study delves into the effectiveness of CO
gas cap drive in high water-cut reservoir
s by examining the movement of the oil-gas interface during the gas cap drive process
using both numerical and physical simulations. Key evaluation metrics include enhanced oil recovery rate
oil displacement efficiency
time to reach the critical gas-oil ratio
and gas retention rate. The research assesses how various reservoir characteristics
such as formation dip angle
crude oil density
viscosity
reservoir confinement
permeability
and the strength of water drive
influence the efficiency of CO
gas cap drive for both oil displacement and sequestration. Focusing on these main evaluation criteria
the study identifies that the suitability of CO
gas cap drive in reservoirs during the high water-cut phase is significantly influenced by factors such as reservoir confinement
formation dip angle
crude oil viscosity
and reservoir thickness. These findings aim to provide a foundation for broadening the application of CO
flooding techniques. crude oil viscosity
reservoir permeability
and thickness
to provide a basis for expanding the application range of CO
flooding.
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