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Modelling of polymer retention during low concentrated HPAM polymer flooding in the heterogeneous reservoirs

机译:非均质油藏中低浓度HPAM聚合物驱过程中的聚合物保留模型

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The polymer retention has been regarded as one of the major concerns in the operating process. The polymer retention includes adsorption, mechanical entrapment, and hydrodynamic retention. Retention by mechanical entrapment occurs when large polymer molecules become lodged in narrow flow channels. A number of studies found that considerable amounts of emulsions are retained at junctions between two different permeability zones, with maximum retention at the front portion of the low permeability zone. Large permeability reductions are also found. These papers imply the strong dependence of retention on the permeability. In addition, researches associated with polymer flooding have identified the characteristic of polymer retention. Overall, polymer retention is attributed to both adsorption onto surfaces and entrapment within small pores. Adsorbed polymers induce greater resistance to flow in low-permeability layers than in high-permeability layers, although the radius of penetration is greater for high-permeability layers. Traditionally, retention has been modelled as only adsorption using Langmuir's adsorption model, even though macromolecules are retained in different locations within pore spaces. Therefore, the model of polymer retention needs to be modified with respect to pore size, which is strongly related to permeability.
机译:聚合物保留被认为是操作过程中的主要问题之一。聚合物保留包括吸附,机械截留和流体力学保留。当大的聚合物分子滞留在狭窄的流道中时,会发生机械截留。大量研究发现,大量的乳液保留在两个不同渗透率区域之间的交界处,最大程度地保留在低渗透率区域的前部。还发现渗透率大大降低。这些论文暗示保留对渗透率的强烈依赖性。此外,与聚合物驱相关的研究已经确定了聚合物保留的特征。总体而言,聚合物保留归因于表面上的吸附和小孔内的截留。尽管高渗透率层的渗透半径更大,但吸附的聚合物在低渗透率层中的流动阻力要大于高渗透率层。传统上,即使大分子保留在孔空间中的不同位置,保留也只能使用Langmuir吸附模型建模为仅吸附。因此,聚合物保留的模型需要针对孔径进行修改,这与渗透性密切相关。

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