稠油化学降粘复合驱提高采收率实验研究
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杨森(1986—),男,河北保定人,工程师,硕士,从事油田开发及提高采收率技术研究。联系电话:(010)82311929,E-mail:yangsen.syky@sinopec.com。

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中国石化科技攻关项目“稠油油藏水平井化学驱开发新方法研究”(P15131),国家科技重大专项“缝洞型油藏改善水驱技术对策研究”(2016ZX05014-003-005)。


Experimental study on chemical viscosity-reducing compound flooding for EOR of heavy oil reservoir
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    摘要:

    受地层压力高、储层厚度薄、边底水活跃等油藏条件影响,部分稠油油藏热采时的热损失大、成本高、采收率 低,难以得到有效开发。通过室内驱油实验,研究稠油降粘剂驱、聚合物驱以及化学降粘复合驱提高采收率机理, 对比分析不同驱油体系对于稠油提高采收率效果的影响。实验结果表明:利用水溶性降粘剂和聚合物组成稠油化 学降粘复合驱驱油体系,可以提高采收率16.04%,优于仅使用降粘剂或聚合物作为驱油剂。对于稠油化学降粘复 合驱效果,从换油效率角度考虑,优化复合驱段塞中聚合物和水溶性降粘剂的质量分数分别为0.3%和1.0%;从提 高采收率角度对比,优化采用前置聚合物段塞后置水溶性降粘剂段塞的注入方式,相比于前置水溶性降粘剂段塞 后置聚合物段塞的注入方式,可提高采收率7.2%~10.7%;在此基础上,优化得到水溶性降粘剂与聚合物段塞的最 佳体积比为3∶2。在非均质模型和微观可视化模型中,化学降粘复合驱不仅兼具聚合物和降粘剂的驱油机理,而且 还产生了协同增效作用,对于稠油较单一化学剂驱可大幅度提高波及范围和洗油效率。

    Abstract:

    Affected by reservoir conditions such as high formation pressure,thin thickness reservoir and active edge or bottom water,some heavy oil reservoirs suffer from large heat loss,high cost and low recovery during thermal recovery. Therefore,effective development is difficult. Through indoor flooding experiments,the enhanced oil recovery mechanism of viscosity reducer flooding,polymer flooding and chemical viscosity-reducing compound flooding in the heavy oil reservoir was studied,and the effect of different flooding systems on the enhanced oil recovery of heavy oil was compared and analyzed.The results show that the chemical viscosity-reducing compound flooding system that contains water-solubility viscosity reducer and polymer can increase the recovery efficiency by 16.04%,which is superior to the flooding using the viscosity reducer or the polymer system alone. From the viewpoint of oil change efficiency,the polymer concentration in the slug of compound flooding was optimized to be 0.3%,and the water-solubility viscosity-reducer concentration was optimized to be 1.0%;from the view point of improving the recovery efficiency,the injection pattern of the viscosity reducer post-slug and the polymer pre-slug is optimized and the recovery efficiency can be increase by 7.2% to 10.7%. On this basis,the optimal volume ratio of water-solubility viscosity reducer to polymer slug is 3∶2. In the heterogeneous model and the microscopic visualization model,the chemical viscosity-reducing compound flooding not only has the oil-displacement mechanism of both the viscosity-reducing agent and the polymer,but also produces a synergistic effect,which can greatly improve the sweep range and oil washing efficiency of heavy oil compared with chemical flooding by a single agent.

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杨森,许关利,刘平,伦增珉,孙建芳,秦学杰.稠油化学降粘复合驱提高采收率实验研究[J].油气地质与采收率,2018,25(5):80~86

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  • 在线发布日期: 2018-09-13