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Effectiveness of Low-Salinity and CO2 Flooding Hybrid Approaches in Low-Permeability Sandstone Reservoirs

机译:低渗透率和CO2驱油混合方法在低渗透砂岩油藏中的有效性

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摘要

Low-salinity waterflooding (LSW) has been an emerging Enhanced Oil Recovery (EOR) technique. LSW-alternating-CO2 injection has recently proven to be a particularly strong EOR stimulation technique. Limited simulation studies have been performed to properly exhibit the interpretation of experimental studies in this area. This study aims to expand the interpretation and application of LSW in sandstone formations. Low-permeability sandstones of 18% clay content, and medium west Texas crude oil with 29 ?API, were selected for evaluating the potentials of LSW and CO2 flooding. Coreflood experiments were conducted and interpreted by reservoir simulation, which enabled a better understanding of the underlying science of the studied EOR techniques. Five secondary waterflooding experiments and two LSW-CO2 hybrid processes were performed using aged 3 in. outcrop Grey Bandera sandstone cores. The wettability of the rock was tested using axisymmetric contact angle measurements to study the effect of injected brine salinity. The interfacial tension values were measured for the different brines and medium crude oil systems. The corefloods were interpreted using reservoir simulation by history-matching the experimental oil RF (Recovery Factor) and the pressure drop across the core. A detailed focus was laid on interpretation of SCAL (Special Core Analyses) relative permeability curves for the various waterflooding operations, by comparing curves generated from published correlations, history-matched curves by simulation, and that by Corey's correlations. Fines migration and viscosity override of low-salinity waters over medium oil influenced the oil recovery profile during LSW. Wettability alteration proved to be effective during LSW for longer injection and production periods. Corey's exponents were found to be premature indications of rock wettability during LSW, proving the importance and reliability of experimental wettability characterization. Low-salinity waterflooding proved to be marginally effective over conventional waterflooding for sandstones with high clay contents and low permeabilities. Low-permeability sandstone reservoirs proved to be suitable targets for hybrid EOR techniques using CO2 and LSW.
机译:低盐度注水(LSW)已经成为一种新兴的强化采油(EOR)技术。 LSW交替CO2注入最近被证明是一种特别强大的EOR刺激技术。已经进行了有限的模拟研究,以正确展示该领域实验研究的解释。这项研究旨在扩大LSW在砂岩地层中的解释和应用。选择了粘土含量为18%的低渗透率砂岩和含29?API的中西部得克萨斯原油,以评估LSW和CO2驱油的潜力。通过油藏模拟进行了岩心驱油实验并进行了解释,这使人们能够更好地了解所研究的EOR技术的基础科学。使用年龄在3英寸的露头Gray Bandera砂岩岩心进行了五个二次注水实验和两个LSW-CO2混合过程。使用轴对称接触角测量来测试岩石的润湿性,以研究注入的盐度盐度的影响。测量了不同盐水和中等原油系统的界面张力值。使用储层模拟方法通过对实验油的RF(采收率)和岩心两端的压降进行历史匹配来解释岩心驱替。通过比较从已发布的相关性生成的曲线,通过模拟的历史匹配曲线以及通过Corey的相关性生成的曲线,详细解释了各种注水作业的SCAL(特殊岩心分析)相对渗透率曲线。低盐度水在中油上的细粉迁移和粘度超控影响了LSW期间的油采收率。事实证明,在LSW较长的注入和生产期间,润湿性改变是有效的。发现Corey的指数是LSW期间岩石润湿性的过早指示,证明了实验润湿性表征的重要性和可靠性。对于高粘土含量和低渗透率的砂岩,低盐度注水被证明比常规注水略有效果。事实证明,低渗透率砂岩油藏是使用CO2和LSW进行混合EOR技术的合适目标。

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    Kumar, Harish T;

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  • 年度 2016
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  • 正文语种 en
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