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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Carbonated water injection (CWI) for improved oil recovery and carbon storage in high-salinity carbonate reservoir
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Carbonated water injection (CWI) for improved oil recovery and carbon storage in high-salinity carbonate reservoir

机译:碳酸注水(CWI),用于改善高盐度碳酸盐储层中的采油和碳储存

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摘要

Carbonated water injection (CWI) is a promising alternative of conventional CO2 flooding which requires smaller amounts of CO2. Currently, most the CWI research focuses on the micromodel and sandstones, but a comprehensive study of the application of CWI in carbonate reservoir is missing in the literature, especially when the reservoir fluid has high salinity. A feasibility study is carried out in this work to design a workflow to thoroughly understand CWI mechanisms for improved oil recovery (IOR) in such reservoirs with the example of Lansing Kansas City (LKC) Group carbonate reservoirs of Kansas and the composition of the produced water. We literature survey and propose approaches for measurement and model of CO2 solubility in brine, so as to establish the apparatus for measuring CO2 solubility in brine to verify or modify existing models of high-salinity solubility. Also, we propose the approach to measure the contact angle when processes of dynamic wettability alternation and substrate dissolution in different minerals and natural carbonate rock occur. Further, we examine and predict outcomes of the micromodel experiment for exploring mechanisms contributing to additional oil recovery, contact angle measurement of carbonated-brine/oil/rock for observing rock wettability alternation and calcite dissolution, and core flooding experiment for observing oil recovery performance as a tertiary method or secondary method. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:碳酸注水(CWI)是常规二氧化碳洪水的有希望的替代,需要较少量的CO 2。目前,大多数CWI研究侧重于微仪和砂岩,但文献中缺少了对CWI在碳酸盐液储层中的应用的综合研究,特别是当储层液高盐度时。在这项工作中进行了可行性研究,以设计工作流程,以彻底了解在这些水库中改善储油(IOR)的CWI机制,其中堪萨斯州堪萨斯州堪萨斯州甘露甘露碳酸盐储存器和生产的水的组成。我们的文献调查并提出了盐水中CO2溶解度的测量和模型方法,从而建立了测量盐水中CO2溶解度的装置,以验证或改变现有的高盐度溶解度模型。此外,我们提出了当发生不同矿物质和天然碳酸盐岩中的动态润湿性交替和底物溶解时测量接触角的方法。此外,我们研究和预测微模实验的结果,以探索有助于额外的采油,接触角度测量的碳酸盐/油/岩石的接触角度测量,用于观察岩石润湿性交替和方解石溶解,以及用于观察石油回收性能的核心泛滥实验三级方法或次要方法。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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