油藏工程

高凝油油藏微生物驱提高采收率实验研究

  • 温静 ,
  • 肖传敏 ,
  • 郭斐 ,
  • 王奎斌 ,
  • 马静
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  • 中国石油辽河油田分公司,辽宁 盘锦 124010
温静(1971—),女,教授级高级工程师,1992年毕业于大庆石油学院油藏工程专业,现从事油气田开发方面研究工作。

收稿日期: 2020-03-20

  修回日期: 2020-09-08

  网络出版日期: 2022-02-18

基金资助

中国石油科技重大专项“稀油高凝油大幅度提高采收率关键技术研究与应用”(2017E-1603)

Experimental Research on Microbial Flooding Technology for Enhancing Oil Recovery in High-pour-point Reservoirs

  • Wen Jing ,
  • Xiao Chuanmin ,
  • Guo Fei ,
  • Wang Kuibin ,
  • Ma Jing
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  • Liaohe Oilfield Company, PetroChina, Panjin, Liaoning 124010, China

Received date: 2020-03-20

  Revised date: 2020-09-08

  Online published: 2022-02-18

摘要

高凝油具有凝固点高、含蜡量高、析蜡温度高的特点,可能对近井地带产生冷伤害,降低油藏渗透率,影响渗流规律,并且制约了水驱转化学驱等提高采收率技术的试验效果。针对该问题,通过室内实验对辽河油田沈84-安12块地层流体中内源微生物进行分离与鉴别,提取了2种耐高温优势微生物菌种,优化了菌种地下激活体系,探究高凝油油藏微生物驱机理。实验结果表明:微生物驱油体系具有降解高凝油蜡质组分作用,有效降低C20以上长链饱和烃,降解率达到19%~33%,改善后原油凝固点降低2~6 ℃,较水驱可提高采收率9.0个百分点。该研究为解决高凝油油藏冷伤害、改善油田开发效果提供了借鉴。

本文引用格式

温静 , 肖传敏 , 郭斐 , 王奎斌 , 马静 . 高凝油油藏微生物驱提高采收率实验研究[J]. 特种油气藏, 2020 , 27(6) : 127 -132 . DOI: 10.3969/j.issn.1006-6535.2020.06.018

Abstract

High pour point oil has the characteristics of high freezing point, high wax content, and high wax precipitation temperature. These characteristics may cause cold damage to the near-well zone, reduce reservoir permeability, and affect seepage law, furthermore, they restrict the effect of recovery enhancing technology like water flooding altering to chemical flooding. In response to these problems, through laboratory experiments the endogenous microorganisms in the formation fluid of Shen84-An12 Block were separated and identified, two high-temperature resistant microbial strains were extracted, the underground activation system of the strains was optimized, and the mechanism of microbial flooding of high pour point oil reservoirs was explored. The experimental results show that the microbial flooding system has the effect of degrading the waxy components of high-pour-point oil. The microbial flooding system can effectively reduce the long-chain saturated hydrocarbons above C20, with degradation rate ranging from 19% to 33%. After the improvement, the freezing point of crude oil was reduced by 2 to 6 ℃, and the recovery rate was 9 percentage points higher than water flooding. This research can provide a reference for solving cold damage in high-pour-point oil reservoirs, improving oilfield development effects, and enhancing development effects.

参考文献

[1] 汪卫东.微生物采油技术研究与试验[J].石油钻采工艺,2012,34(1):107-113.
WANG Weidong.Laboratory research and field trials of microbial oil recovery technique[J].Oil Drilling & Production Technology,2012,34(1):107-113.
[2] 王红波,彭晓钟,吴运强,等.克拉玛依油田六中区地层水内源微生物激活现场试验[J].新疆石油地质,2011,32(5):523-524.
WANG Hongbo,PENG Xiaozhong,WU Yunqiang,et al.Activating test of endogenous microbes in formation water of district mid-6 in Karamay Oilfield[J].Xinjiang Petroleum Geology,2011,32(5):523-524.
[3] 王岚岚,吕振山,魏兆胜,等.吉林油田微生物采油的矿场实践与认识[J].石油天然气学报,2005,27(6):931-933.
WANG Lanlan,LYU Zhenshan,WEI Zhaosheng,et al.Field application and recognition of microbial production[J].Journal of Oil and Gas Technology,2005,27(6):931-933.
[4] 赵玲侠,高配科,曹美娜,等.大庆聚驱后油藏内源微生物群落结构解析与分布特征研究[J].环境科学,2012,33(2):625-632.
ZHAO Lingxia,GAO Peike,CAO Meina,et al.Research on population structure and distribution characteristic of indigenous microorganism in post-polymer-flooding oil reservoir[J].Environmental Science,2012,33(2):625-632.
[5] 高配科,马挺,赵玲侠,等.胜利油田沾3区块内源微生物激活剂的筛选、优化及效果评价[J].化工学报,2011,62(7):2006-2012.
GAO Peike,MA Ting,ZHAO Lingxia,et al.Screening,optimization and evaluation of indigenous microorganism activation system in Zhan 3 Block,Shengli Oilfield[J].CIESC Journal,2011,62(7):2006-2012.
[6] 曹嫣镔,刘涛,李彩凤,等.一株嗜热脂肪地芽孢杆菌解的驱油性能及机理[J].应用与环境生物学报,2015,21(6):1060-1064.
CAO Yanbin,LIU Tao,LI Caifeng,et al.Efficiency and mechanism of oil displacement by a strain of Geobacillus stearothermophilus[J].Chinese Journal of Applied and Environmental Biology,2015,21(6):1060-1064.
[7] 韩松,付步飞,李畅,等.一株稠油降黏菌BIT-BS002的性质研究与矿场应用[J].微生物学杂志,2012,32(4):24-29.
HAN Song,FU Bufei,LI Chang,et al.Characteristics and field application of bio-surfactant produced by bacillus subtilis BIT-BS002[J].Journal of Microbiology,2012,32(4):24-29.
[8] 包木太,孔祥平,宋永亭,等.胜利油田S12块内源微生物群落选择性激活条件研究[J].石油大学学报,2004,28(6):44-48.
BAO Mutai,KONG Xiangping,SONG Yongting,et al.Selective activation condition of stratal microflora of S12 Block in Shengli Oilfield[J].Journal of the University of Petroleum,China,2004,28(6):44-48.
[9] 宋智勇,郭辽原,高光军,等.内源微生物驱油物模实验及其群落演变研究[J].石油钻采工艺,2010,32(1):89-93.
SONG Zhiyong,GUO Liaoyuan,GAO Guangjun,et al.Succession of microbial community in physical simulation of indigenous microorganism flooding[J].Oil Drilling & Production Technology,2010,32(1):89-93.
[10] 夏小雪,朱维耀,李娟,等.油藏内源微生物生长代谢及驱油特性研究[J].石油天然气学报,2014,36(1):122-126.
XIA Xiaoxue,ZHU Weiyao,LI Juan,et al.Reservoir indigenous microorganisms growth metabolism and its oil displacement characteristics[J].Journal of Oil and Gas Technology,2014,36(1):122-126.
[11] 桑林翔,杨兆中,杨果,等.高黏稠油生物降黏驱替技术实验研究[J].特种油气藏,2017,24(6):148-151.
SANG Linxiang,YANG Zhaozhong,YANG Guo,et al.Experimental study of biological viscosity reduction for high-viscosity heavy oil[J].Special Oil & Gas Reservoirs,2017,24(6):148-151.
[12] 王卫强,丁影影,王国付,等.基于复配菌的原油降黏效果分析[J].特种油气藏,2018,25(2):120-124.
WANG Weiqiang,DING Yingying,WANG Guofu,et al.Analysis of oil viscosity reducing performance based on compound bacteria[J].Special Oil & Gas Reservoirs,2018,25(2):120-124.
[13] 李清心,康从宝,王浩,等.降解原油微生物的筛选及其部分特性的研究[J].石油勘探与开发,2002,29(6):91-93.
LI Qingxin,KANG Congbao,WANG Hao,et al.Screening of four degrading oil bacteria and their some characteristics[J].Petroleum Exploration and Development,2002,29(6):91-93.
[14] 唐赟,冯露,刘沐之,等.嗜热解烃菌NG80-2的鉴定及其特性[J].南开大学学报,2006,39(2):46-50,70.
TANG Yun,FENG Lu,LIU Muzhi,et al.Identification and characters of thermophilic desmolysing bacteria NG80-2[J].Acta Scientiarum Naturalium Universitatis Nankaiensis.2006,39(2):46-50,70.
[15] 王学立,陈智宇,李晓泉,等.官69断块微生物驱油现场试验效果分析[J].石油勘探与开发,2005,32(2):107-109.
WANG Xueli,CHEN Zhiyu,LI Xiaoquan,et al.Microbial flooding in Guan 69 Block,Dagang Oilfield[J].Petroleum Exploration and Development,2005,32(2):107-109.
[16] 刘洋.采油微生物激活产气实验研究及在大庆油田的应用[J].石油地质与工程,2017,31(3):105-107.
LIU Yang.Gas production experimental study through microbial activation and its application in Daqing Oilfield[J].Petroleum Geology and Engineering,2017,31(3):105-107.
[17] 杨帆,顾磊,许科伟,等.塔里木盆地玉北1构造带油气微生物勘查[J].石油地质与工程,2017,31(5):41-43,46.
YANG Fan,GU Lei,XU Kewei,et al.Hydrocarbon microbial prospecting of Yubei1 tectonic belt in Tarim Basin[J].Petroleum Geology and Engineering,2017,31(5):41-43,46.
[18] 陈箐,程昉,宋晓峰,等.辽河油田油泥微生物多样性分析及功能菌种筛选评价[J].东北石油大学学报,2017,41(6):105-111.
CHEN Qing,CHENG Fang,SONG Xiaofeng,et al.Analysis of microbial diversity and functional strain screening evaluation from Liaohe Oilfield sludge[J].Journal of Northeast Petroleum University,2017,41(6):105-111.
[19] 杨帆,沈忠民,汤玉平,等.渤海湾盆地陈家庄油田陈22块微生物异常分布研究[J].石油实验地质,2017,39(1):141-146.
YANG Fan,SHEN Zhongming,TANG Yuping,et al.Microbial anomaly distribution in Chen 22 Block,Chenjiazhuang Oilfield,Bohai Bay Basin[J].Petroleum Geology & Experiment,2017,39(1):141-146.
[20] 余浩元,蔡春芳,郑剑锋,等.微生物结构对微生物白云岩孔隙特征的影响:以塔里木盆地柯坪地区肖尔布拉克组为例[J].石油实验地质,2018,40(2):233-243.
YU Haoyuan,CAI Chunfang,ZHENG Jianfeng,et al.Influence of microbial textures on pore characteristics of microbial dolomites:a case study of Lower Cambrian Xiaoerbulake Formation in Keping Area,Tarim Basin[J].Petroleum Geology & Experiment,2018,40(2):233-243.
[21] 兰夕堂,张丽平,刘长龙,等.南堡35-2油田内源微生物提高采收率实验[J].大庆石油地质与开发,2018,37(4):118-121.
LAN Xitang,ZHANG Liping,LIU Changlong,et al. EOR experiment of the endogenous microorganism in Nanpu 35-2 Oilfield[J].Petroleum Geology & Oilfield Development in Daqing,2018,37 (4):118-121.
[22] 徐哲航,兰才俊,杨伟强,等.四川盆地震旦系灯影组微生物丘沉积演化特征[J].大庆石油地质与开发,2018,37(2):15-25.
XU Zhehang, LAN Caijun,YANG Weiqiang,et al. Sedimentary and evolutionary characteristics of Sinian Dengying-Formation microbial mound in Sichuan Basin[J]. Petroleum Geology & Oilfield Development in Daqing,2018,37 (2):15-25.
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