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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Smart water flooding performance in carbonate reservoirs: an experimental approach for tertiary oil recovery
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Smart water flooding performance in carbonate reservoirs: an experimental approach for tertiary oil recovery

机译:碳酸盐岩储层的智能注水性能:三次采油的实验方法

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Smart water flooding as a developing technique utilizes modified water chemistry in terms of salinity and composition to prepare the best-suited brine composition for a specific brine/oil/rock system to obtain higher oil recovery efficiency. Huge amount of unrecovered oil is expected to be remained in carbonate reservoirs; however, few research works on incremental oil recovery during smart water injection in carbonate cores at reservoir condition are reported. Several core flooding tests using one of the Iranian carbonate reservoir rock are conducted to check the effectiveness of smart water injection for more oil recovery efficiency. The results reaffirm the positive effect of sulfate ions to play a key role for better smart water performance. Moreover, it was concluded that the calcium ion concentration is not as effective as magnesium ion for the tests performed at reservoir condition. Synthetic sea water (high-salinity) flooding was considered as the base scenario which results in almost 63% oil recovery efficiency for secondary recovery scenario. Formation of micro-emulsions was found to be the main reason of additional pressure drop during low-salinity water flooding. This clearly showed that the diluted smart water injecting increases the ultimate oil recovery up to 4–12% for already water-flooded carbonate reservoirs.
机译:智能注水作为一种发展中的技术,利用盐度和组成方面的改良水化学来为特定的盐水/油/岩石系统制备最适合的盐水组成,以获得更高的采油效率。预计碳酸盐岩储层中将残留大量未采出的石油;但是,关于在储层条件下向碳酸盐岩心中智能注水期间增加采油量的研究工作很少。使用伊朗一种碳酸盐岩储层岩石进行了几次岩心驱油测试,以检查智能注水的有效性,以提高采油效率。该结果重申了硫酸根离子的积极作用,对于更好的智能水性能起着关键作用。此外,可以得出结论,对于在储层条件下进行的测试,钙离子浓度不如镁离子有效。合成海水(高盐度)驱油被认为是基本方案,其次要开采方案的采油效率接近63%。发现微乳液的形成是低盐度水驱过程中附加压力下降的主要原因。这清楚地表明,对于已经注水的碳酸盐岩油藏,稀释的智能注水可以将最终油采收率提高多达4–12%。

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