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The New Development of Amphiphilic Polymer Profile Control Agent in High Temperature and High Salinity Reservoirs

机译:高温高盐水储层中两亲聚合物型材控制剂的新发展

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Profile control treatment is an effective technology to improve reservoir heterogeneity and decrease the watercut. Polymer gel has become the most widely used profile control agent. The most commonly used polymer in polymer gels is HPAM, which has poor adaptability in high temperature and high salinity reservoirs resulting in poor gel performance. Amphiphilic polymers have good viscosifying action in high temperature and high salinity reservoirs due to the polymer chain entanglement and hydrophobic chain association. In this paper, one amphiphilic polymer (PADC) was developed by introducing a betaine type functional monomer. In order to further improve the anti-temperature performance of PADC, the idea of using inorganic nanoparticles for enhancement was proposed. Based on this, a composite gel with good temperature and salt resistance was developed by adding crosslinking agent. The effects of nanosilica particle concentration, polymer concentration and crosslinking agent concentration on the gel performance of the composite gel were investigated systematically. The results showed that salt viscosifying action ability was related to the ionic strength. The higher the ionic strength, the larger the polymer molecular hydraulics radius. At the same time, the strength of hydrophobic association was improved and formed a denser spatial network structure. The synergistic effects made PADC have the characteristic of salt viscosifying action. It was also found that the viscoelasticity of the polymer solution changed from a viscous system to an elastic system by adding nano-silica, and apparent viscosity increased significantly. We have demonstrated that nano-silica surface will adsorb free polymer moleculesin solution, and form molecular brushes due to charge attraction and hydrogen bonding. The molecular brushes will adsorb and combine with the spatial network structure formed by the amphiphilic polymer. A significant improvement in the gel strength of composite polymer gel compared with organic polymer gel. Our work indicates that the composite gel based on amphiphilic polymer has significantly potential applications in high temperature and high salinity reservoirs, it has certain reference significance for stabilizing oil output and controlling water content for the similar reservoirs.
机译:轮廓控制处理是一种有效的技术,可以改善水库异质性并减少水围。聚合物凝胶已成为最广泛使用的型材控制剂。聚合物凝胶中最常用的聚合物是HPAM,其在高温和高盐度储存器中具有差的适应性,导致凝胶性能差。由于聚合物链纠缠和疏水链协会,两亲聚合物在高温和高盐度储层中具有良好的粘度作用。在本文中,通过引入甜菜碱型官能单体来开发一种两亲性聚合物(PADC)。为了进一步改善PADC的抗温度性能,提出了使用无机纳米颗粒进行增强的想法。基于此,通过添加交联剂开发了具有良好温度和耐盐性的复合凝胶。系统地研究了纳米碱颗粒浓度,聚合物浓度和交联剂浓度对复合凝胶凝胶性能的影响。结果表明,盐粘合作用能力与离子强度有关。离子强度越高,聚合物分子液压液体半径越大。同时,疏水性关联的强度得到改善并形成了更密集的空间网络结构。协同效应使PADC具有盐粘度作用的特征。还发现聚合物溶液的粘弹性通过加入纳米二氧化硅从粘性系统改变为弹性系统,表观粘度显着增加。我们已经证明,纳米二氧化硅表面将吸附不含聚合物分子素溶液,并由于电荷吸引和氢键而形成分子刷。分子刷将吸附并与由两亲聚合物形成的空间网络结构相结合。与有机聚合物凝胶相比复合聚合物凝胶凝胶强度的显着改善。我们的作品表明,基于两亲性聚合物的复合凝胶在高温和高盐度储层中具有显着潜在的应用,它具有一定的参考意义,用于稳定油输出和控制类似储层的水含量。

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