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Effect of Polymer Degradation on Polymer Flooding in Heterogeneous Reservoirs

机译:聚合物降解对非均质油藏聚合物驱的影响

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摘要

Polymer degradation is critical for polymer flooding because it can significantly influence the viscosity of a polymer solution, which is a dominant property for polymer enhanced oil recovery (EOR). In this work, physical experiments and numerical simulations were both used to study partially hydrolyzed polyacrylamide (HPAM) degradation and its effect on polymer flooding in heterogeneous reservoirs. First, physical experiments were conducted to determine basic physicochemical properties of the polymer, including viscosity and degradation. Notably, a novel polymer dynamic degradation experiment was recommended in the evaluation process. Then, a new mathematical model was proposed and an in-house three-dimensional (3D) two-phase polymer flooding simulator was designed to examine both polymer static and dynamic degradation. The designed simulator was validated by comparison with the simulation results obtained from commercial software and the results from the polymer flooding experiments. This simulator further investigated and validated polymer degradation and its effect. The results of the physical experiments showed that the viscosity of a polymer solution increases with an increase in polymer concentration, demonstrating their underlying power law relationship. Moreover, the viscosity of a polymer solution with the same polymer concentration decreases with an increase in the shear rate, demonstrating shear thinning. Furthermore, the viscosity of a polymer solution decreased with an increase in time due to polymer degradation, exhibiting an exponential relationship. The first-order dynamic degradation rate constant of 0.0022 day−1 was greater than the first-order static degradation rate constant of 0.0017 day−1. According to the simulation results for the designed simulator, a 7.7% decrease in oil recovery, after a cumulative injection volume of 1.67 pore volume (PV) was observed between the first-order dynamic degradation rate constants of 0 and 0.1 day−1, which indicates that polymer degradation has a detrimental effect on polymer flooding efficiency.
机译:聚合物降解对于聚合物驱来说至关重要,因为它会显着影响聚合物溶液的粘度,这是聚合物提高采油率(EOR)的主要属性。在这项工作中,物理实验和数值模拟都用于研究部分水解聚丙烯酰胺(HPAM)的降解及其对非均质油藏中聚合物驱的影响。首先,进行物理实验以确定聚合物的基本物理化学性质,包括粘度和降解。值得注意的是,在评估过程中推荐了一种新颖的聚合物动态降解实验。然后,提出了一个新的数学模型,并设计了一个内部三维(3D)两相聚合物驱油模拟器,以研究聚合物的静态和动态降解。通过与商业软件获得的模拟结果以及聚合物驱油实验的结果进行比较,对设计的模拟器进行了验证。该模拟器进一步研究并验证了聚合物降解及其效果。物理实验的结果表明,聚合物溶液的粘度随着聚合物浓度的增加而增加,证明了它们的潜在幂律关系。此外,具有相同聚合物浓度的聚合物溶液的粘度随着剪切速率的增加而降低,表明剪切稀化。此外,由于聚合物降解,聚合物溶液的粘度随着时间的增加而降低,表现出指数关系。 0.0022天 -1 的一阶动态降解速率常数大于0.0017天 -1 的一阶静态降解速率常数。根据所设计模拟器的模拟结果,在一级动态降解速率常数0和0.1天之间观察到累积注入体积为1.67孔体积(PV)后,油采收率下降了7.7%- 1 ,表明聚合物降解对聚合物驱油效率有不利影响。

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