西南石油大学学报(自然科学版) ›› 2012, Vol. 34 ›› Issue (6): 131-135.

• 石油与天然气工程 • 上一篇    下一篇

CO2 微观驱油实验研究

杜建芬1,陈静1,李秋1,郭平1,郭平2   

  1. 1.“油气藏地质及开发工程”国家重点实验室 西南石油大学,四川成都6105002. 中国石化胜利油田地质科学研究院,山东东营257015
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2012-12-01 发布日期:2012-12-01

Experimental Study on Micro-displacement Oil for Different CO2Displacement Mechanism

Du Jianfen1, Chen Jing1, Li Qiu1, Guo Ping1, Guo Ping2   

  1. 1. The State Key Laboratory of Oil & Gas Reservoir Geology and Exploitation Engineering,Southwest Petroleum University,Chengdu,Sichuan610500,China;2. Geological Science Research Institute of Shengli Oilfield,Sinopec,Dongying,Shandong 257015,China
  • Received:1900-01-01 Revised:1900-01-01 Online:2012-12-01 Published:2012-12-01

摘要: 针对不同CO2 驱油方式下提高采收率机理认识仍不完全清楚等问题,利用与地层孔隙结构相似的高压可视化微模型进行了水驱、CO2 非混相驱、CO2 近混相驱和CO2 混相驱四组驱替实验,并采用微观驱油动态彩色图像分析和二值化处理相结合的研究方法,对比研究了不同驱替方式中驱替前缘形状、油气界面、油气分布特征、含油面积大小和模拟油颜色变化。结果表明:水驱油时,水大部分以非活塞形式驱油、油水界面呈凹凸弧线形;CO2 非混相驱中,CO2 与原油存在明显的两相流,界面形状比较锐利,窜流和混流比较严重,气体突破较早;CO2 近混相驱替过程中,油气界面模糊、两相区不明显、没有形成明显的混相带;而混相驱过程中形成了清晰可见的混相带,油气界面明显圆滑和模糊,在相同条件下混相驱持续的时间最长,采收率最高。该研究对CO2 有效驱油和驱油机理认识具有重要的理论意义。

关键词: 二氧化碳, 微观驱油, 提高采收率, 实验, 二值化

Abstract: For more direct observation and comparison of the enhanced oil recovery mechanism with different displacement
ways by CO2,the high-pressure visualization micro model is adopted,which is similar to stratigraphic pore structure to perform
four groups of experiment of water flooding,miscible displacement,nearly immiscible displacement and immiscible
displacement by CO2 in this paper. Based on the color image processing technology and binary image two-value method,the
different displacement front,oil-gas interface,oil-gas distribution characteristics,oil area in model and oil color change of
the different displacement way are studied and contrasted. The research shows that most water displaces oil with unpistol-like
flow during water displacement and oil-gas interface is of convex curve;in CO2 immiscible displacement,there are obvious
gas-liquid two-phase flow between them,the shape of the gas-liquid interface is sharp and the streaming and mixed phase flow
of gas-liquid is more serious and the gas breaks through early;In CO2 nearly immiscible displacement,the oil-gas interface is
dim,gas-liquid diphase region is not obvious and no obvious gas-liquid transition zone is formed. While in the process of CO2
miscible displacement,a distinct gas-liquid transition zone is formed and oil-gas interface is obviously sleek and fuzzy. And,
under the same condition,the CO2 miscible displacement lasts longer than others during the whole displacement process. This
study is of great significance for understanding oil displacement with CO2 and its mechanism.

Key words: words:experiment, binarization