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Assessment on the Transport of Polymeric Solution through High-Salinity Reservoirs Containing Divalent Cations

机译:通过含有二价阳离子的高盐度储层进行聚合物溶液的评估

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Water salinity and hardness have been regarded as main limitation for field application of polymer floods. It causes not only reduction of polymer concentration, but also injectivity loss in the near wellbore. Based on the mathematical and chemical theory, extensive numerical simulations were conducted to investigate performance of polymer floods in the high-salinity reservoirs. According to results from simulations, the high salinity reduces the viscosity of polymer in contacting area. That causes a poor sweep efficiency of polymer flooding. Moreover, the presence of divalent cations makes the project of polymer flooding worse. That is because of excessively increased bottom-hole pressure in injection well by the precipitation of polymer. The quantitative assessment of polymer floods needs to be required before field application. Therefore, the results in this paper are helpful for optimal polymer flooding design under harsh reservoir conditions.
机译:水盐度和硬度被认为是聚合物洪水的田间应用的主要限制。它不仅引起聚合物浓度的降低,而且在接近井眼中的重新损失。基于数学和化学理论,进行了广泛的数值模拟,以研究高盐度储层中的聚合物洪水的性能。根据模拟的结果,高盐度降低了接触区域中聚合物的粘度。这导致聚合物洪水的扫描效率不佳。此外,二价阳离子的存在使得聚合物洪水的项目更差。这是因为通过聚合物的沉淀良好地注入的底孔压力过度增加。在现场申请之前需要要求聚合物洪水的定量评估。因此,本文的结果有助于在苛刻的储层条件下最佳的聚合物洪水设计。

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