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Experimental Investigation and Optimization of Polymer Enhanced CO2 Foam Stability and Apparent Viscosity

机译:聚合物的实验研究和优化CO2泡沫稳定性和表观粘度

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Polymer enhanced foam (PEF) provides an additional strength over conventional CO2 foams for mobilizing oil from the unswept low permeable oil rich zones during an enhanced oil recovery process. The efficiency of the process depends on two major factors i.e. stability and apparent viscosity of PEF. In this study, an experimental investigation of apparent viscosity and stability of polymer enhanced CO2 foam is presented with an objective to assess the polymer performance and to identify the best performing polymer under reservoir conditions of 1500 psi and 80 °C. For this purpose, conventional standard hydrolyzed polymacrylamide (HPAM) polymers and an associative polymer i.e. Superpusher P329 were used in combination with a widely used foamer i.e. alpha olefin sulfonate (AOS) and a foam stabilizer i.e. betaine. Foam stability tests were conducted in the presence of crude oil using FoamScan. Whereas for foam rheological study, a high pressure high temperature Foam Rheometer was utilized and the foam was sheared over the range of 10 to 500 sec-1 inside the recirculating loop. As compared to other HPAMs, an associative polymer i.e. Superpusher P329 significantly amplified foam longevity and provided a more prolonged liquid drainage. A shear thinning behavior was observed for the entire range of shear rate tested and for all the tested foam. HPAMs were found ineffective in improving foam apparent viscosity and the viscosities obtained were found equivalent to that to polymer free foam. Superpusher P329 showed interesting combination with AOS and significant viscosity enhancement has been reported in this paper. This research concluded that Superpusher P329 has the ability to generate strong foam and it is a potiential candidate for mobility control during polymer enhanced CO2 foam flooding process.
机译:聚合物增强泡沫(PEF)提供了在常规CO 2泡沫上的额外强度,用于在增强的采油过程中从未扫描的低渗透油状地区调动油。该过程的效率取决于两个主要因素I.E.PEF的稳定性和表观粘度。在该研究中,提出了一种实验性粘度和聚合物增强CO 2泡沫稳定性的实验研究,目的是评估聚合物性能,并在1500psi和80℃的储层条件下鉴定最佳性能的聚合物。为此目的,常规标准水解的金属丙烯酰胺(HPAM)聚合物和缔合聚合物I.e.Superpusher P329与广泛使用的泡沫酸盐(AOS)和泡沫稳定剂相结合使用。甜菜碱。泡沫稳定性试验在原油存在下使用泡沫进行。虽然对于泡沫流变学研究,使用高压高温泡沫流变仪,并且在再循环回路内剪切在10至500秒-1的范围内。与其他HPAM相比,联合聚合物I.E.E.E.S超级用途P329显着放大泡沫寿命,并提供了更长时间的液体排水。在测试的整个剪切速率和所有测试泡沫中观察到剪切稀疏行为。发现HPAM在改善泡沫表观粘度方面无效,发现所得粘度相当于聚合物自由泡沫。 Superpusher P329显示出与AOS和显着的粘度增强的有趣组合已经报道了本文。该研究得出结论,超级开发师P329具有产生强泡沫的能力,并且在聚合物增强的CO2泡沫泛滥过程中是迁移率控制的潜在候选者。

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