高温产表活剂菌种提高低效油井产能技术PRODUCTIVITY IMPROVING TECHNIQUE FOR THE INEFFICIENT WELLS BY THERMOPHILIC BIOSURFACTANT-PRODUCING BACTERIA
孙磉礅
SUN Sangdun
摘要(Abstract):
孤东油田七区馆上段原油黏度高,部分油井供液不足、产量低。为提高油井产量,针对区块特点,利用一株高温产表活剂地芽孢杆菌SH-2进行了室内评价研究。结果表明:该菌高温条件下具有较强的乳化能力,60~65℃发酵液的乳化指数高达100%,且能利用烃类进行生长代谢,与原油和柴油作用后乳化粒径为10μm和5μm左右;改变岩石润湿性作用5 d后,试片接触角降低了60.6%;现场选取G07-41-176和G07-53X145两口低产低效油井开展单井微生物吞吐试验,产油量分别从0.8 t/d和0t/d提高到3.3t/d和4.2 t/d,显著提高了油井产能,降低了油井含水率。该技术成本低,无污染,具有良好的经济和社会效益。
The oil viscosity in Guan Upper Member of No.7 area of Gudong Oilfield is rather high,the liquid supply of parts of oil producers is deficient and moreover the production is rather low.In order to improve the oil production,in the light of the characteristics of the block,Bacillus licheniformis SH-2,one thermophilic biosurfactantproducing bacterium,is employed to conduct indoor evaluating studies.The results show that the strain possesses pretty strong emulsifying ability under high-temperature condition,and the emulsion index of the fermenting broth is up to 100%from 60 ℃ to 65 ℃.In addition,it can use the hydrocarbon to grow and metabolize,and when it acts on the oil and diesel oil,the emulsion particle size is about 10 μm and 5 μm respectively.The rock wettability is changed for 5 days and the contact angle decreases by 60.6%;two low-yield and inefficient wells:G07-41-176 and G07-53X145 are selected for microbial individual-well huff and puff test,and the oil production increases from 0.8t/d and 0 t/d to 3.3 t/d and 4.2 t/d,respectively,indicating the productivity of the two oil wells are improved and the water cuts of the oil producers are decreased.This technology has advantages of low cost and no pollution,and moreover possesses much better economic and social benefits.
关键词(KeyWords):
地芽孢杆菌;高温乳化;润湿性;微生物吞吐
Bacillus licheniformis;high-temperature emulsion;wettability;microbial huff and puff
基金项目(Foundation): 国家高技术研究发展计划(863计划)“中高温油藏微生物驱油技术研究”(2013AA064401)
作者(Author):
孙磉礅
SUN Sangdun
参考文献(References):
- [1]穆金峰,魏三林,姜延庆,等.化学吞吐技术在超深稠油井的应用[J].特种油气藏,2010,17(4):101-103.
- [2]徐树成,张太斌,卞士举,等.低产低效探井复查与增产工艺[J].油气地质与采收率,2003,10(2):48-49.
- [3]汪卫东.微生物采油技术研究及试验[J].石油钻采工艺,2012,34(1):107-113.
- [4]汪卫东,魏斌,谭云贤,等.微生物采油需要进一步解决的问题[J].石油勘探与开发,2004,31(6):88-91.
- [5]隋军,石梅,孙凤荣,等.以石油烃类为唯一碳源提高采收率菌种的研究[J].石油学报,2001,22(5):53-57.
- [6]张浩,赵贲,陈巨明,等.利用微生物吞吐技术开采稠油、特稠油[J].石油钻采工艺,2003,25(增刊):57-59.
- [7]盖立学,王艳玲,柏璐璐,等.微生物采油技术在大庆油田低渗透油藏的应用[J].大庆石油地质与开发,2011,30(2):145-149.
- [8]石梅,侯兆伟,李蔚,等.特低渗油藏微生物矿场试验效果评价[J].油田化学,2003,20(3):269-272.
- [9]武海燕,张廷山,兰光志,等.克拉玛依油田微生物吞吐矿场试验及效果分析[J].西南石油学院学报,2005,27(3):57-59.
- [10]朱维耀,刘圣志,王元基,等.微生物吞吐渗流理论及预测方法[J].石油勘探与开发,2006,33(4):505-510.
- [11]胡永全,陈星,王桢.低渗透气藏压裂水平井产量计算新模型[J].大庆石油地质与开发,2015,34(1):73-78.
- [12]吴伟,吴国斌,殷泉东,等.应用于东辛油田的堵—固一体化工艺[J].大庆石油地质与开发,2014,33(3):114-117.
- [13]王学忠,毕义泉,谷建伟,等.应用水平井复合采油及配套技术开发薄浅层超稠油[J].大庆石油地质与开发,2014,33(1):141-145.
- [14]苟燕,高树生,彭永灿,等.新疆莫北油田水驱油机理与采出程度分析[J].大庆石油地质与开发,2013,32(3):74-78.
- [15]王克亮,冯晗,孙丽静,等.低张力体系与泡沫体系交替注入驱油效果[J].大庆石油地质与开发,2012,31(2):141-145.
- [16]李元生,李相方,藤赛男,等.低渗透气藏产水气井两相产能方程研究[J].特种油气藏,2014,21(4):97-100.
- [17]刘歆,周凤军,张迎春,等.海上油田稀井网大井距聚合物驱应用与分析[J].特种油气藏,2012,19(2):104-107.
- [18]张贤松,郑伟,谢晓庆.海上油田早期聚合物驱增油量评价的新方法[J].特种油气藏,2014,21(1):106-109.
- [19]樊泽霞,李玉英,丁长灿,等.聚合物对泡沫稳定性的影响研究[J].特种油气藏,2013,20(6):102-104.
- [20]周燕.弱边水普通稠油油藏蒸汽吞吐转氮气泡沫辅助蒸汽驱界限——以孤岛油田中二北Ng5为例[J].油气地质与采收率,2009,16(3):68-70.