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MEOR Success in Southern Saskatchewan

机译:在萨斯喀彻温省南部取得成功

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摘要

A microbial enhanced-oil-recovery (MEOR) process was successfully applied in a mature waterflooded reservoir in Saskatchewan, Canada. A nutrient solution, which was designed specifically for this reservoir to stimulate indigenous microbes to grow, multiply, and help to release oil, was tested and piloted. A significant decrease in water cut and increase in oil production have been realized through the selective stimulation of bacteria using nutrient injection.rnThe field is a mature waterflood averaging more than 95% water cut. To combat the increasing water-cut issue, an in-situ microbial response analysis (ISMRA) was performed on a typical high-water-cut producer in the area. The test well was treated with a nutrient solution and then was shut in for a number of days to allow indigenous microbes to grow and multiply. Upon return to production, the well produced at an average of 200% more oil with a 10% decrease in water cut for a year. Pretreatment rates averaged 1.2 m~3/d of oil (8 BOPD) and post-ISMRA treatment daily production peaked at 4.1 m~3/d of oil (26 BOPD). The ISMRA provides a direct support of laboratory studies and frequently increases oil production.rnAs a result of the successful ISMRA, a pilot project was initiated and the nutrients were applied in three batch treatments on an injector with three offset production wells. Three weeks after the first batch treatment, a water-cut decrease was seen at one of the offset producers. This well's oil production gradually increased from 1.4 to more than 8 m~3/d (9 to 50 B/D). Oil production in another producer doubled from 1.5 to more than 3.0 m~3/d (9 to 19 B/D). Subsequent treatments were tried on marginally economic wells and on a reactivated idle producer. The average decrease in water cut in these wells was more than 10%. On the idle well, oil production increased from 0.5 m~3/d (3 B/D) pretreatment to an average of 3.0 m~3/d (19 B/D) post-treatment.rnThroughout the world, there remains a huge target for enhanced-oil-recovery (EOR) processes to target (Bryant 1991). This successful MEOR application will have a tremendous impact on ultimate recovery in many of these reservoirs not only through an increase in production, but a decrease in operating costs through associated reduction in lifting costs with less water production.
机译:在加拿大萨斯喀彻温省一个成熟的水驱油藏中成功实施了微生物强化采油(MEOR)工艺。测试和试验了一种营养液,该营养液是专门为该水库设计的,以刺激本地微生物生长,繁殖并帮助释放石油。通过使用营养注入选择性地刺激细菌,已经实现了含水率的显着下降和石油产量的增加。油田是成熟的水驱,平均含水率超过95%。为了应对日益增加的含水率问题,对该地区典型的高含水率生产者进行了原位微生物响应分析(ISMRA)。用营养液对测试孔进行处理,然后关闭几天,以使土著微生物得以生长和繁殖。恢复生产后,一年的平均采油量增加了200%,含水率降低了10%。预处理速率平均为1.2 m〜3 / d油(8 BOPD),ISMRA处理后的日产量最高为4.1 m〜3 / d油(26 BOPD)。 ISMRA提供了直接的实验室研究支持,并经常提高了石油产量。ISMRA成功的结果是启动了一个试点项目,并在具有3口偏移生产井的喷油器上对营养进行了三批处理。在第一批处理后三周,其中一个胶印生产商的含水率下降。该井的采油量从1.4逐渐增加到8 m〜3 / d以上(9 B / D到50 B / D)。另一生产商的石油产量从1.5倍增加到3.0 m〜3 / d以上(9到19 B / D)。随后对微弱的经济井和恢复生产的闲置生产者进行了处理。这些井的含水率平均下降超过10%。在闲置井上,采油量从预处理的0.5 m〜3 / d(3 B / D)增长到平均3.0 m〜3 / d(19 B / D).rn提高采收率(EOR)过程的目标(Bryant 1991)。 MEOR的成功应用将不仅通过增加产量,而且通过减少水的产生而相应地降低起重成本,对许多水库的最终采收率产生巨大影响。

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  • 来源
    《SPE Reservoir Evaluation & Engineering 》 |2010年第5期| p.773-781| 共9页
  • 作者单位

    Southern Alberta and southern Saskatchewan assets of Husky Energy in Calgary;

    rnMicrobiology Research Unit, University of the Sunshine Coast in Queensland, Australia;

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