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Similarities and Differences of Low Salinity Polymer and Low Salinity LPS (Linked Polymer Solutions) for Enhanced Oil Recovery

机译:低盐度聚合物和低盐度LPS(链接的聚合物溶液)的异同以提高采油率

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Linked polymer solution (LPS) is nano-size particles made of hydrolyzed polyacrylamide (HPAM) cross-linked with aluminum citrate. The propagation of LPS has been compared to non-cross-linked polymers at low brine salinity condition. The possible differences in properties and potentials for oil recovery have been investigated using water-wet and intermediate-wet cores. The target oil for polymer flooding (PF) is assumed to be the portion of the reservoir that has been bypassed by water during waterflooding and not the residual oil saturation in flooded zones. Our recent studies have shown that a positive synergy can be obtained by combining low salinity and PF. It has been claimed in the literature that cross-linking polymer such as colloidal dispersion gels (colloidal dispersion gels (CDG), micron-size aggregates) or LPS (nano-size particles) would extend the application of polymers to also include change in residual oil saturation. The results of this study indicated higher pressure buildup when low salinity LPS was propagated through brine saturated cores compared to low salinity polymer solution. The pressure buildup was even stronger for high salinity LPS injection. In two phase flow experiments, both polymer and LPS under low salinity condition, showed approximately similar propagation and oil recovery potential when injected into water-wet and intermediate-wet cores.
机译:链接的聚合物溶液(LPS)是由水解聚丙烯酰胺(HPAM)与柠檬酸铝交联而成的纳米级颗粒。已将LPS的繁殖与低盐度盐度条件下的非交联聚合物进行了比较。已经使用水湿和中湿岩心研究了性质和油采收潜力的可能差异。假定聚合物驱的目标油(PF)是在注水期间被水绕过的储层部分,而不是注水区的剩余油饱和度。我们最近的研究表明,通过将低盐度和PF结合可以获得积极的协同作用。在文献中已要求交联聚合物,例如胶体分散凝胶(胶体分散凝胶(CDG),微米级聚集体)或LPS(纳米级颗粒)将扩展聚合物的应用范围,使其还包括残留量的变化。油饱和度。这项研究的结果表明,与低盐度聚合物溶液相比,当低盐度LPS通过盐水饱和岩心传播时,压力会更高。对于高盐度LPS注入,压力建立甚至更强。在两相流实验中,低盐度条件下的聚合物和LPS在注入水湿和中湿岩心中均显示出近似的繁殖和采油潜力。

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