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Experimental investigation of associative polymer performance for CO2 foam enhanced oil recovery

机译:二氧化碳泡沫缔约置聚合物性能的实验研究增强了采油

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摘要

Polymer addition amplifies the foam flood performance by providing a substantial mobility control during the enhanced oil recovery (EOR). A conventional anionic polymer i.e. hydrolyzed polyacrylamide (HPAM) is widely used for polymer enhanced foam (PEF) flooding. In this study, the foam stability and viscosity performance of the conventional HPAM polymer were compared with a relatively new associative polymer. An associative polymer (i.e. Superpusher B 192) and the conventional polymer of same molecular weight were considered and the foam generation was performed using a widely used foamer i.e. alpha olefin sulfonate (AOS) and a foam stabilizer (betaine). FoamScan was used to measure the foam stability whereas, for foam viscometric measurements, a high-pressure high-temperature foam rheometer was utilized. An associative polymer showed an interesting combination and both the apparent viscosity and foam stability were found to be significantly high. The conventional polymer failed to provide a high foam strength in rheometric analysis whereas, an associative polymer showed an interesting viscosity profile and a two-fold increase in the foam apparent viscosity was observed. This study shows that the associative Superpusher B192 holds a bright potential in increasing the foam flood performance during EOR.
机译:聚合物添加通过在增强的采油(EOR)期间提供大量迁移率控制来放大泡沫泛滥性能。常规的阴离子聚合物I.。水解的聚丙烯酰胺(HPAM)广泛用于聚合物增强泡沫(PEF)泛滥。在该研究中,将常规HPAM聚合物的泡沫稳定性和粘度性能与相对较新的缔合聚合物进行比较。考虑缔合聚合物(即超级用过者B 192)和相同分子量的常规聚合物,并且使用广泛使用的发泡剂I.e.α烯烃磺酸盐(AOS)和泡沫稳定剂(甜菜碱)进行泡沫产生。 FoamScan用于测量泡沫稳定性,而对于泡沫粘度测量,使用高压高温泡沫流变仪。缔合聚合物表现出一个有趣的组合,并且发现表观粘度和泡沫稳定性明显高。常规聚合物未能在流变术分析中提供高泡沫强度,而缔合聚合物显示出有趣的粘度曲线,并且观察到泡沫表观粘度的两倍增加。该研究表明,联想超级假设B192在增加EOR期间增加泡沫洪水性能的亮度潜力。

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