文章检索
首页» 过刊浏览» 2023» Vol.8» Issue(2) 166-178     DOI : 10.3969/j.issn.2096-1693.2023.02.012
最新目录| | 过刊浏览| 高级检索
水平井+CO2 吞吐改善中低渗稠油油藏开发效果机制解析——以大港油田刘官庄埕隆 1601 区块为例
王晓燕,赵贤正,周立宏,李东平,张杰,周华兴,章杨,王 海峰,夏国朝,田木国,庄永涛,王栋
1 中国石油大港油田分公司,天津 300280 2 东北石油大学提高油气采收率教育部重点实验室,大庆 163318
10.3969/j.issn.2096-1693.2023.02.010
WANG Xiaoyan, ZHAO Xianzheng, ZHOU Lihong, LI Dongping, ZHANG Jie, ZHOU Huaxing, ZHANG Yang, WANG Haifeng, XIA Guochao, TIAN Muguo, ZHUANG Yongtao, WANG Dong.
1 PetroChina Dagang Oilfield Company, Tianjin 300280, China 2 Laboratory of Enhanced Oil Recovery of Education Ministry, Northeast Petroleum University, Daqing 163318, China

全文:   HTML (1 KB) 
文章导读  
摘要  特稠油油藏由于原油黏度大,储层渗透率低,油层厚度薄,导致常规热采开发效果差。本文通过物理模拟与数值模拟,从微观作用机制和宏观增油效果 2 方面开展研究,结果表明CO2 吞吐开发能够溶蚀储层岩石,提高渗透率,降低原油黏度,改善中低渗特稠油油藏开发效 果。
服务
把本文推荐给朋友
加入我的书架
加入引用管理器
关键词 : 中低渗透稠油油藏,CO2 吞吐,增油机制,水平井,矿场试验
Abstract

Due to high oil viscosity, low permeability, thin reservoir formation, sand production, complex ground conditions, etc., Liu Guan-zhuang Chenglong 1601 Block in Dagang Oilfield, which is a heavy oil reservoir, cannot be developed effectively through conditional development technology. Therefore, horizontal well + CO2 huff and puff technology was proposed to solve this problem. And the experimental researches and the field test were conducted. Through laboratory experiments and numerical simulations, the mechanisms of enhanced oil recovery were studied and the injection-production parameters were optimized. The results showed that, after CO2 was dissolved in the heavy oil, the viscosity of the oil decreased from 16 800 mPa·s to 69 mPa·s, and the viscosity reduction rate was 99.6%; the threshold pressure gradient of the oil dropped from 19.1 MPa/m to 0.2 MPa/m. The absolute permeability increased by about 41.86%. Therefore, the heavy oil was more flowability. The optimal injected CO2 mass per unit length was between 3.5 and 5.5 t/m, the optimal CO2 injection rate per unit length was between 0.5 and 0.6 t/(m·d), the optimal shut in period was between 25 and 35 days, the optimal liquid production rate per day per unit length was between 0.075 and 0.125 m3 /(m·d). Two kinds of integrated injection and production string, namely, the combination of oil pumping unit, hydraulic feedback pump and electric heating rod, hydraulic jet pump were employed. The horizontal well + CO2 huff and puff technology was carried out in field test, and significant technical and economic effects were achieved, which proved the reliability and practicality of this technology. A single round of CO2 huff and puff process obtained an oil increase of 1000~2000 tons, with the maximum oil increase of more than 4,000 tons. The oil production per mass CO2 was over 1.72 t/t. This technology provides a good reference for the economic exploration and development in the same type of oil reservoir

Key words: medium-low permeability and heavy oil reservoir; CO2 huff and puff; enhanced oil recovery mechanisms; horizontal well; field test
收稿日期: 2023-04-28     
PACS:    
基金资助:中国石油天然气股份有限公司重大科技专项“大港油区效益增储稳产关键技术研究与应用”(2018E-11-07) 资助
通讯作者: wxiaoy05@petrochina.com.cn
引用本文:   
王晓燕, 赵贤正, 周立宏, 李东平, 张杰, 周华兴, 章杨, 王海峰, 夏国朝, 田木国, 庄永涛, 王栋. 水平井+ CO2 吞吐改善中低渗稠油油 藏开发效果机制解析——以大港油田刘官庄埕隆 1601 区块为例. 石油科学通报, 2023, 02: 166-178 WANG Xiaoyan, ZHAO Xianzheng, ZHOU Lihong, LI Dongping, ZHANG Jie, ZHOU Huaxing, ZHANG Yang, WANG Haifeng, XIA Guochao, TIAN Muguo, ZHUANG Yongtao, WANG Dong. Mechanism analysis of horizontal well + CO2 huff and puff to improve the development effect in medium and low permeability heavy oil reservoirs—A case from Liu Guan-zhuang Chenglong 1601 Block in Dagang Oilfield as an example. Petroleum Science Bulletin, 2023, 02: 166-178.
链接本文:  
版权所有 2016 《石油科学通报》杂志社