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Comparison of oil displacement mechanisms and performances between continuous and dispersed phase flooding agents

机译:连续相和分散相驱油剂驱油机理及性能比较

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To compare the oil displacement mechanisms and performances of continuous phase flooding agent (traditional polymer solution) and dispersed phase flooding agent (particle-type polymer SMG dispersion), the particle phase separation of SMG dispersion migrating in pores was simulated by using the microfluidic technology. Theoretically guided by the tree fork concentration distribution of red cells in biological fluid mechanics, the concentration distribution mathematical model of SMG in different pores is established. Furthermore, the micro and macro physical simulation experiments of continuous and dispersed phase flooding agents were carried out. The results show that the continuous flooding agent enters all the swept zones and increases the flow resistance in both larger and small pores. On the contrary, the particle phase separation phenomenon occurs during the injection process of dispersed flooding agent. The SMG particles gather in the larger pore to form bridge blinding, and the carrier fluid displace oil in the small pore. Working in cooperation, the SMG particle and carrier fluid drive the residual oil in the low permeability layers step by step and achieve the goal of enhanced oil recovery. The laboratory experimental results indicate that, the oil increment and water reduction effect of dispersed flooding agent is much better than that of continuous flooding agent, which is consistent with the field test results.
机译:为了比较连续相驱油剂(传统聚合物溶液)和分散相驱油剂(颗粒型聚合物SMG分散体)的驱油机理和性能,采用微流控技术模拟了SMG分散体在孔中迁移的颗粒相分离。理论上,以生物流体力学中红细胞的树叉浓度分布为指导,建立了不同孔隙中SMG的浓度分布数学模型。此外,进行了连续相和分散相驱油剂的微观和宏观物理模拟实验。结果表明,连续驱油剂进入所有扫掠区,增大了大孔和小孔的流动阻力。相反,在分散驱油剂的注入过程中会发生颗粒相分离现象。 SMG颗粒聚集在较大的孔中,形成桥盲,并且载液置换了小孔中的油。 SMG颗粒与载液协同工作,逐步驱使低渗透层中的残油,达到提高采油率的目的。实验室实验结果表明,分散驱油剂的增油减水效果要好于连续驱油剂,与现场试验结果相吻合。

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