油藏工程

普通稠油降黏剂辅助氮气吞吐开采机理

  • 李宾飞 ,
  • 臧雨浓 ,
  • 刘小波 ,
  • 黄咏梅 ,
  • 李海峰 ,
  • 朱建军 ,
  • 卢小娟
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  • 1.中国石油大学华东,山东 青岛 266580;
    2.中国石油长庆油田分公司,陕西 西安 710021;
    3.中国石化胜利油田分公司,山东 东营 257000;
    4.山东瑞恒兴域石油技术开发有限公司,山东 青岛 266061;
    5.中海油田服务股份有限公司,天津 300450
李宾飞(1978—),男,教授,2001年毕业于石油大学(华东)石油工程专业,2007年毕业于中国石油大学(华东)油气田开发工程专业,获博士学位,现主要从事稠油开采、注气增产及提高采收率等方面研究工作。

收稿日期: 2020-07-30

  修回日期: 2021-05-15

  网络出版日期: 2022-02-18

基金资助

国家重点研发计划项目“稠油化学复合冷采渗流机理及油藏数值模方法”(2018YFA0702400)

Mechanism of Nitrogen Stimulation Assisted by Common Heavy Oil Viscosity Reducer

  • Li Binfei ,
  • Zang Yunong ,
  • Liu Xiaobo ,
  • Huang Yongmei ,
  • Li Haifeng ,
  • Zhu Jianjun ,
  • Lu Xiaojuan
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  • 1. China University of Petroleum East China, Qingdao, Shandong 266580, China;
    2. PetroChina Changqing Oilfield Company, Xi'an, Shaanxi 710021, China;
    3. Sinopec Shengli Oilfield Company, Dongying, Shandong 257000, China;
    4. Shandong Ruiheng Xingyu Petroleum Technology Development Co., Ltd., Qingdao, Shandong 266061, China;
    5. China Oilfield Services Limited, Tianjin 300450, China

Received date: 2020-07-30

  Revised date: 2021-05-15

  Online published: 2022-02-18

摘要

针对普通稠油降黏剂辅助氮气吞吐过程中开采特征不明确、降黏剂和氮气协同作用机理不明晰的问题,通过微观可视实验和物理模拟,揭示吞吐过程中流体微观分布特征和降黏剂作用机理,对比研究普通稠油氮气吞吐、降黏剂辅助氮气吞吐的开采特征。结果表明:在普通稠油降黏剂辅助氮气吞吐过程中,降黏剂能有效分散原油和氮气,形成水包油型乳状液和少量泡沫,乳状液和泡沫的贾敏效应能有效抑制气窜,扩大波及面积,延长气体弹性能量作用时间,提高氮气有效吞吐周期,室内实验普通稠油降黏剂辅助氮气吞吐开采可提高采收率6.5个百分点。研究结果有助于进一步明确降黏剂筛选原则,为降黏剂辅助氮气吞吐现场应用提供借鉴。

本文引用格式

李宾飞 , 臧雨浓 , 刘小波 , 黄咏梅 , 李海峰 , 朱建军 , 卢小娟 . 普通稠油降黏剂辅助氮气吞吐开采机理[J]. 特种油气藏, 2021 , 28(4) : 88 -95 . DOI: 10.3969/j.issn.1006-6535.2021.04.012

Abstract

To address the issues on indefinite production characteristics and unclear synergistic mechanism of reaction between viscosity reducer and nitrogen during nitrogen stimulation assisted by common heavy oil viscosity reducer, the microscopic distribution characteristics of fluid and the mechanism of viscosity reducer in the stimulation process were discovered by microscopic visual experiments and physical simulation to compare and study the production characteristics of nitrogen stimulation assisted by common heavy oil viscosity reducer. The results showed that in the nitrogen stimulation assisted by common heavy oil viscosity reducer, the viscosity reducer effectively dispersed crude oil and nitrogen to form oil-in-water emulsion and a small amount of foam, and the Jamin effect of the emulsion and foam effectively inhibited gas channeling to enlarge the affected area, extend the action time of elastic energy of gas and prolong the effective nitrogen stimulation cycle, and the oil recovery was improved by 6.5 percentage points with nitrogen stimulation assisted by common heavy oil viscosity reducer in the indoor experiments. The study results are conducive to further clarifying the principles of viscosity reducer selection and provide a reference for the field application of nitrogen stimulation assisted by viscosity reducer.

参考文献

[1] 计秉玉.国内外油田提高采收率技术进展与展望[J].石油与天然气地质,2012,33(1):111-117.
JI Bingyu.Progress and prospects of enhanced oil recovery technologies at home and abroad[J].Oil & Gas Geology,2012,33(1):111-117.
[2] 李海波,侯吉瑞,李巍,等.碳酸盐岩缝洞型油藏氮气泡沫驱提高采收率机理可视化研究[J].油气地质与采收率,2014,21(4):93-96.
LI Haibo,HOU Jirui,LI Wei,et al.Laboratory research on nitrogen foam injection in fracture-vuggy reservoir for enhanced oil recovery[J].Petroleum Geology and Recovery Efficiency,2014,21(4):93-96.
[3] 郭平,苑志旺,廖广志.注气驱油技术发展现状与启示[J].天然气工业,2009,29(8):92-96.
GUO Ping,YUAN Zhiwang,LIAO Guangzhi.Status and enlightenment of international gas injection EOR technology[J].Natural Gas Industry,2009,29(8):92-96.
[4] 王进安,岳陆,袁广钧,等.氮气驱室内实验研究[J].石油勘探与开发,2004,31(3):119-121.
WANG Jin'an,YUE Lu,YUAN Guangjun,et al.Laboratory research on nitrogen drive[J].Petroleum Exploration and Development,2004,31(3):119-121.
[5] 王佩佩.稠油油藏效益注汽主要方法及评价[J].石油地质与工程,2020,34(4):78-83.
WANG Peipei. Main methods and evaluation on the efficiency of steam injection for heavy oil reservoirs[J]. Petroleum Geology & Engineering, 2020, 34(4): 78-83.
[6] 彭世强,郑伟.海上稠油多元热流体吞吐产能影响因素研究[J].石油地质与工程,2020,34(3):67-70.
PENG Shiqiang ZHENG Wei. Influencing factors of huff and puff capacity of multiple thermal fluids for offshore heavy oil[J].Petroleum Geology & Engineering, 2020, 34(3): 67-70.
[7] 彭通曙,郑爱萍,刘洪恩,等.新疆浅层稠油油藏氮气辅助蒸汽吞吐提高采收率研究与应用[J].新疆石油天然气,2009,5(3):45-47.
PENG Tongshu,ZHENG Aiping,LIU Hong'en,et al.Study and application on EOR by gaseous nitrogen-assistant cyclic steam injection in heavy-oil reservoir of shallow buried formation in Xinjiang[J].Xinjiang Oil & Gas,2009,5(3):45-47.
[8] 于会永,刘慧卿,张传新,等.超稠油油藏注氮气辅助蒸汽吞吐数模研究[J].特种油气藏,2012,19(2):76-78,139.
YU Huiyong,LIU Huiqing,ZHANG Chuanxin,et al.Numerical simulation of nitrogen assisted cyclic steam stimulation for super heavy oil reservoirs[J].Special Oil & Gas Reservoirs,2012,19(2):76-78,139.
[9] 王嘉淮,李允.注氮气改善稠油蒸汽吞吐后期开采效果[J].西南石油学院学报,2002,24(3):46-49.
WANG Jiahuai,LI Yun.Improve steam soaking performance by injecting nitrogen[J].Journal of Southwest Petroleum Institute,2002,24(3):46-49.
[10] 李睿姗,何建华,唐银明,等.稠油油藏氮气辅助蒸汽增产机理试验研究[J].石油天然气学报,2006,28(1):72-75.
LI Ruishan,HE Jianhua,TANG Yinming,et al.Experiment on the mechanism of nitrogen-assisted steam stimulation in heavy oil reservoirs[J].Journal of Oil and Gas Technology,2006,28(1):72-75.
[11] 谢文生,梁唤雨,高华,等.注氮气技术在稠油油田的应用[J].化工设计通讯,2019,45(4):70.
XIE Wensheng,LIANG Huanyu,GAO Hua,et al.Application of nitrogen injection technology in heavy oil field[J].Chemical Engineering Design Communications,2019,45(4):70.
[12] 王杰祥,王腾飞,任文龙,等.常规稠油边水油藏氮气泡沫抑制水侵实验[J].中国石油大学学报(自然科学版),2013,37(2):75-80.
WANG Jiexiang,WANG Tengfei,REN Wenlong,et al.Experiment on nitrogen foam anti-edge water invasion in normal heavy oil reservoir with edge water[J].Journal of China University of Petroleum(Edition of Natural Science),2013,37(2):75-80.
[13] 侯健,高达,孙建芳,等.稠油油藏不同热采开发方式经济技术界限[J].中国石油大学学报(自然科学版),2009,33(6):72-76,92.
HOU Jian,GAO Da,SUN Jianfang,et al.Economic and technical boundary values of different thermal recovery methods in heavy oil reservoir development[J].Journal of China University of Petroleum(Edition of Natural Science),2009,33(6):72-76,92.
[14] 戴彩丽,纪文娟,姜汉桥,等.用于稠油蒸汽吞吐井深部封窜的热触变体系的性能实验[J].中国石油大学学报(自然科学版),2010,34(4):167-171.
DAI Caili,JI Wenjuan,JIANG Hanqiao,et al.Performance experiment on thermal thixotropic system for deep channeling plugging in steam huff and puff wells[J].Journal of China University of Petroleum (Natural Science Edition),2010,34(4):167-171.
[15] 曾玉强,刘蜀知,王琴,等.稠油蒸汽吞吐开采技术研究概述[J].特种油气藏,2006,13(6):8-12,108.
ZENG Yuqiang,LIU Shuzhi,WANG Qin,et al.Overview of heavy oil cyclic steam stimulation recovery technology[J].Special Oil & Gas Reservoirs,2006,13(6):8-12,108.
[16] 袁士义,刘尚奇,张义堂,等.热水添加氮气泡沫驱提高稠油采收率研究[J].石油学报,2004,25(1):57-61,65.
YUAN Shiyi,LIU Shangqi,ZHANG Yitang,et al.Enhancing heavy oil recovery with hot water flooding by adding nitrogen and surfactant[J].Acta Petrolei Sinica,2004,25(1):57-61,65.
[17] 陈涛平,毕佳琪,孙文,等. 低渗特低渗油层富气—氮气复合驱[J]. 东北石油大学学报,2020,44(4):40-47.
CHEN Taoping, BI Jiaqi, SUN Wen, et al. Rich gas-nitrogen compound flooding in low and ultra-low permeability layers[J]. Journal of Northeast Petroleum University,2020,44(4):40-47.
[18] 张戈,王梦涵,焦红岩,等.断块油藏氮气吞吐筛选标准[J].断块油气田,2019,26(6):766-770.
ZHANG Ge,WANG Menghan,JIAO Hongyan,et al. Criteria for nitrogen stimulation selection of fault block reservoirs[J]. Fault-Block Oil & Gas Field,2019,26(6):766-770.
[19] 张洪宝,刘永建,塔耀晶,等.稠油油藏氮气辅助蒸汽驱室内实验[J].断块油气田,2020,27(5):624-627.
ZHANG Hongbao,LIU Yongjian,TA Yaojing,et al.Laboratory experiment of nitrogen assisted steam flooding in heavy oil reservoir[J].Fault-Block Oil & Gas Field,2020,27(5):624-627.
[20] 蒋平.稠油油藏表面活性剂驱油机理研究[D].东营:中国石油大学(华东),2009.
JIANG Ping.Research of the mechanism of surfactant flooding for heavy oil reservoir[D].Dongying:China University Of Petroleum(East China),2009.
[21] 秦正山,周建良,谢晶.致密砂岩油藏注表面活性剂驱油体系提高采收率实验[J].断块油气田,2020,27(5):628-632.
QIN Zhengshan,ZHOU Jianliang,XIE Jing.Experiment on enhanced oil recovery by surfactant-injection oil displacement system in tight sandstone reservoirs[J].Fault-Block Oil & Gas Field,2020,27(5):628-632.
[22] 孙焕泉.薄储层超稠油热化学复合采油方法与技术[J].石油与天然气地质,2020,41(5):1100-1106.
SUN Huanquan.Hybrid thermal chemical recovery of thin extra-heavy oil reservoirs[J].Oil & Gas Geology,2020,41(5):1100-1106.
[23] 张强,吴晓燕,王成胜,等.渤海L油田稠油改质催化剂表征及性能分析[J].石油地质与工程,2020,34(6):58-62.
ZHANG Qiang, WU Xiaoyan, WANG Chengsheng, et al.Characterization and performance analysis of catalytic modification catalysts for heavy oil in Bohai L oilfield[J].Petroleum Geology & Engineering,2020,34(6):58-62.
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