Polymers for application in high temperature and high salinity reservoirs – critical review of properties and aspects to consider for laboratory screening

IF 0.1 Q4 ENERGY & FUELS Fuentes el Reventon Energetico Pub Date : 2018-11-20 DOI:10.18273/revfue.v16n2-2018004
Y. Araujo, M. Araujo
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引用次数: 8

Abstract

A significant amount of oil resides in deep reservoirs characterized by relatively high temperature and high salinity. In such reservoirs, most available chemicals fluids for EOR have limited applicability. Even though recent effort has been dedicated to the development of high temperature polymers, there is no clear understanding of what would work best in those harsh environments. In addition, the oil and gas community is also evaluating potential applications of chemical EOR to offshore assets where similar conditions are often found. Field applications in harsh reservoirs have shown limited success in the use of polymers for improved oil recovery. Detail analysis reveals that screening of the fluids was done under ‘model’ laboratory conditions, using non-reservoir core samples and non-representative fluids. These facts have motivated research and development work towards understanding the type of polymers that may be suitable for use in high temperature and high salinity reservoirs and to determine the type of tests to use to assess their performance in a field application for use as lab screening criteria. In this paper, we provide a critical review of the available polymers for application in high temperature and high salinity reservoirs and summarize best practices for their laboratory screening though a recommended workflow.
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高温高矿化度油藏中应用的聚合物——性质综述和实验室筛选需要考虑的方面
深部储层具有较高的温度和矿化度,是大量石油的主要特征。在这样的油藏中,大多数用于提高采收率的化学流体的适用性有限。尽管最近一直致力于高温聚合物的开发,但对于在这些恶劣环境中什么效果最好还没有明确的认识。此外,石油和天然气行业也在评估化学提高采收率在海上资产中的潜在应用,因为海上资产经常发现类似的情况。在恶劣油藏的现场应用中,使用聚合物提高采收率的效果有限。详细分析表明,流体筛选是在“模型”实验室条件下进行的,使用了非油藏岩心样品和非代表性流体。这些事实推动了研究和开发工作,以了解可能适合在高温和高盐度储层中使用的聚合物类型,并确定用于评估其在现场应用中的性能的测试类型,作为实验室筛选标准。在本文中,我们对可用于高温高盐度油藏的聚合物进行了综述,并通过推荐的工作流程总结了实验室筛选的最佳实践。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
7
审稿时长
15 weeks
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