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Study on the Performance of Hydrophobic Association Water-soluble Polymer with Strong Association ability

机译:疏水结合水溶性聚合物具有良好结合能力的研究

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In this article, the viscosifying abilities, rheological properties, and flow characteristics of hydrophobic association water-soluble polymer with high association ability were studied using technical methods of viscosity measurement, rheological and core flow experiments. The results illustrate that hydrophobic associated polymers with low molecular weight rely on a strong hydrophobic interaction, the intermolecular and intramolecular micellar structure formed in solution with a strong ability to increase viscosity. Hydrophobic association water-soluble polymer, comparing with partially hydrolyzed polyacrylamides polymer with low molecular weight, presents a better ability of shear stability under the condition of shearing and the solution structure strengthens gradually so as to increase viscoelasticity remarkably. The hydrophobic association water-soluble polymer with high association ability take on greater injectivity and mobility control ability in low permeability porous media solving the problem of low injectivity and poor control ability in mid-low permeability reservoirs, which improves polymers flooding effect in such reservoirs and underlie the reasonable design of polymer molecular structure.
机译:在本文中,利用粘度测量,流变和核心流动实验的技术方法研究了具有高结合能力的疏水结合水溶性聚合物的粘度能力,流变性能和流动特性。结果说明了具有低分子量的疏水相关聚合物依赖于强的疏水性相互作用,在溶液中形成的分子间和分子内胶束结构具有较强的增加粘度的能力。疏水缔合水溶性聚合物,与低分子量的部分水解聚丙烯酰胺聚合物相比,在剪切条件下呈现更好的剪切稳定性能力,溶液结构逐渐加强,以显着增加粘弹性。具有高结合能力的疏水结合水溶性聚合物对低渗透多孔介质的更大的重新入射率和迁移率控制能力解决了中低渗透储层中的低再射性和控制能力差的问题,这提高了这种储层中的聚合物泛滥效应提出了聚合物分子结构的合理设计。

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