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Microbial enhanced oil recovery of oil-water transitional zone in thin-shallow extra heavy oil reservoirs: A case study of Chunfeng Oilfield in western margin of Junggar Basin, NW China

机译:浅层特重质油藏油水过渡带微生物强化采收率-以西北准Jung尔盆地西缘春风油田为例

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To improve the production effect of oil-water transitional zone in thin-shallow extra heavy oil reservoirs of Chunfeng Oilfield in western marginal area of the Junggar Basin, microbial enhanced oil recovery was studied taking the P6-P48 well of the oil-water transitional zone as an example. In the early stage of steam stimulation, the P6-P48 well was shut-in due to high water cut caused by edge water incursion, and analysis showed that its reservoir conditions are suitable for microbial cold production technology. According to the P6-P48 well oil sample composition, the study screened indigenous microbe strain of bacillus XJ2-1, aeruginosa XJ3-1, Dietz's bacteria Z4M8-2, inoculating microbes strain of bacillus SLG5B10-17, nutrient solution, and activator; and designed microbial injection scheme according to near borehole zones treatment radius. In September 2014, 865 m3 of microbial bacterial liquid, nutrient solution and activator was injected and the well was shut in for 166 d of reaction time. The well-hole was opened to produce in March 15, 2015, and has produced 405 d until April 30, 2016, producing oil 3 464 t. The 50 °C degassing crude oil viscosity was decreased by 58% after microbial enhanced oil recovery, and the injected live bacteria was found in produced fluid, with more quantity, indicating that the injected bacteria are adaptive and has reproduced in formation condition. Compared with 16 adjacent wells of steam soaking, microbial enhanced oil recovery has long valid period and better economic benefit. Microbial enhanced oil recovery also got good results in the P6-P49 and P6-P47 wells.
机译:为提高准gar尔盆地西缘春风油田薄浅超稠油油藏油水过渡带的生产效果,以油水过渡带P6-P48井为研究对象,采用微生物强化采油技术。举个例子。在蒸汽增产初期,由于边缘水侵入引起的高含水率,P6-P48井被关闭,分析表明其储层条件适合微生物低温生产技术。根据P6-P48井油样品组成,筛选了本地细菌XJ2-1,铜绿XJ3-1,迪茨氏细菌Z4M8-2,接种菌SLG5B10-17,营养液和活化剂。并根据井眼附近处理半径设计了微生物注入方案。 2014年9月,注入了865 m3的微生物细菌液,营养液和活化剂,并且关闭了该井166天的反应时间。该井孔于2015年3月15日开始生产,截至2016年4月30日已生产405 d,生产石油3 464 t。微生物提高采收率后,50°C脱气原油的粘度降低了58%,并且在采出液中发现了注入的活菌,数量更多,这表明注入的细菌具有适应性并在地层条件下繁殖。与相邻的16口蒸汽浸泡井相比,微生物强化采油有效期长,经济效益好。在P6-P49和P6-P47井中,微生物提高的采油率也取得了良好的效果。

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