›› 2016, Vol. 37 ›› Issue (6): 1-1.doi: 10.7657/XJPG20160613

• 论文 •    

克拉玛依砾岩油藏二元复合驱物理解堵实验研究与应用

吕建荣a,孙楠b,聂振荣a,刘文涛a,周玉辉a   

  1. (中国石油 新疆油田分公司 a.勘探开发研究院;b.工程技术研究院,新疆 克拉玛依 834000)
  • 出版日期:2019-01-01 发布日期:1905-07-17

Physical Plugging Removal of Binary Combination Flooding in Conglomerate Reservoirs in Karamay: Experimental Study and Application

LYU JianrongaSUN NanbNIE ZhenrongaLIU WentaoaZHOU Yuhuia   

  1. (Xinjiang Oilfield Company, PetroChinaa.Research Institute of Exploration and Developmentb.Research Institute of Engineering and TechnologyKaramayXinjiang 834000China)
  • Online:2019-01-01 Published:1905-07-17

摘要: 针对新疆克拉玛依油田七中区克拉玛依组下亚组砾岩油藏二元复合驱体系注入初期在深部地层发生堵塞,导致试验效果低于设计方案的问题,利用电子探针X射线显微分析仪研究其堵塞的微观分布和成因表明,相对分子质量和质量浓度均过高的二元复合驱体系与储集层配伍性差,注入后主要赋存于黏土矿物堆积的复杂孔隙和喉道中,导致砾岩储集层物性变差,驱油过程流动性变差;而砾岩储集层中所含的大量高岭石易于在较高的注入速度下发生脱落,并与注入的二元复合驱体系作用,从而导致储集层孔隙的堵塞。在此认识基础上,开展了物理解堵实验研究,选择不同物性的典型天然岩心,先后注入高、中、低不同相对分子质量和质量浓度的二元复合驱体系,压力平稳后计算阻力系数和残余阻力系数,判断其流动性。结果表明,砾岩储集层物理解堵存在渗透率界限,即通过逐步降低二元复合驱体系相对分子质量和质量浓度,可以有效缓解渗透率大于50 mD的中、高渗储集层的堵塞,但无法缓解渗透率小于50 mD的低渗储集层的堵塞。现场配方调整后,注入压力稳步下降,产液量稳中有升,堵塞得到有效的缓解。预计研究区砾岩油藏二元复合驱可以实现提高采收率15%的目标。

Abstract: Regarding the problems of poorer experiment effect than the designed one due to plugging in deep layers at the initial binary combination injection stage into the conglomerate reservoirs in the lower Karamay formation in District Qizhong of Karamay oilfield, Xinjiang, the microscopic distribution and genesis of the plugging are studied using electron-probe X-ray microanalyzer. The result shows that the binary combination system with excessive molecular weight and mass concentration matches poorly with the reservoir and mainly occurs in complex pores and pore throat where clay minerals accumulate, which results in poor physical properties of the conglomerate reservoir and poor mobility during the oil displacement process. Large amount of kaolinite in the conglomerate reservoir tends to drop off at relatively high injection rate and reacts with the injected binary combination system, resulting in the plugging of reservoir pores. Based on the above understanding, experimental study on physical plugging removal is carried out. Typical natural cores with different physical properties are selected, and binary combination systems with high, moderate and low molecular weights and mass concentrations are injected in to the cores. Resistance coefficient and residual resistance coefficient are calculated under steady pressure and then the mobility could be determined. The result shows that physical plugging removal in the conglomerate reservoir has a permeability limit that the plugging in moderate and high permeability reservoirs (>50 mD) could be effectively relieved by gradually decreasing the molar weight and mass concentration of the binary combination system, but it doesn’t work for the plugging in low permeability reservoirs (<50 mD) . After field formula adjustment, injection pressure decreases steadily, liquid production increases and plugging is effectively relieved. It is predicted that the binary combination flooding in the conglomerate reservoir could improve recovery factor by 15% in the study area

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