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Enhanced oil recovery mechanism and recovery performance of micro‐gel particle suspensions by microfluidic experiments

机译:通过微流体实验增强了储油机制和微凝胶颗粒悬浮液的恢复性能

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摘要

Abstract Micro‐gel particle suspensions (MGPS) have been proposed for enhanced oil recovery (EOR) in reservoirs with harsh conditions in recent years, yet the mechanisms are still not clear because of the complex property of MGPS and the complex geometry of rocks. In this paper, the micro‐gel particle‐based flooding has been studied by our microfluidic experiments on both bi‐permeability micromodels and reservoir‐on‐a‐chip. A method for reservoir‐on‐a‐chip design has been proposed based on QSGS (quartet structure generation set) to ensure that the flow geometry on chip owns the most important statistical features of real rock microstructures. In the micromodel experiments with heterogeneous microstructures, even if the MGPS has the same macroscopic rheology as the hydrolyzed polyacrylamides (HPAM) solution for flooding, MGPS may lead to significant fluctuations of pressure field caused by the nonuniform concentration distribution of particles. In the reservoir‐on‐a‐chip experiments, clustered oil trapped in the swept pores can be recovered by MGPS because of pressure fluctuation, which hardly happens in the HPAM flooding. Compared with the water flooding, the HPAM solution flooding leads to approximately 17% incremental oil recovery, while the MGPS results in approximately 49.8% incremental oil recovery in the laboratory.
机译:摘要近年来,已经提出了近年来具有恶劣条件的储层(MGP)的微凝胶颗粒悬浮液(MGP),但由于MGP的复杂性和岩石的复杂几何形状,因此尚不清楚。本文通过我们的微流体实验对双渗透性微典和蓄水剂进行了微流体实验,研究了微凝胶颗粒的洪水。基于QSGS(四倍结构生成集)提出了一种用于储层设计方法,以确保芯片上的流动几何形状拥有真实岩石微结构的最重要统计特征。在异构微结构微观模型的实验中,即使MGPS具有相同的宏观流变作为驱水解的聚丙烯酰胺(HPAM)溶液,MGPS可能导致引起颗粒的非均匀浓度分布的压力场的显著波动。在储层的芯片实验中,由于压力波动,MGP可以通过MGP捕获在扫过孔中的聚类油,这几乎不会发生在HPAM泛滥中。与水洪水相比,HPAM溶液泛滥导致约17%的增量溢油,而MGPS在实验室中导致约49.8%的增量溢油恢复。

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