Interfacial Tension and Contact Angle Data Relevant to Carbon Sequestration

P. Bikkina, Imran K. Shaik
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引用次数: 7

Abstract

Interfacial tension (IFT) between “native reservoir fluid” and “injected CO2” and the contact angle (CA) among the reservoir rock, native reservoir fluid, and injected CO2 are major factors that dictate the relative permeability and capillary pressure characteristics which in turn control the fluid flow and distribution characteristics in the reservoir and cap rocks. This chapter is a comprehensive review on the state-of-the-art of the experimentally measured and theoretically predicted IFT and CA data of water/brineCO2-quartz/calcite/mica systems that are relevant to CO2 sequestration. Experimental techniques used to generate the IFT and CA data and details of molecular simulations used to predict the data are discussed. Respective comparisons of the IFT and CA data reported by various research groups are also made. Possible reasons for disagreements in the published literature are discussed, and suggestions are made for future research in this area to address the potential technical issues in order to obtain reproducible data.
与固碳有关的界面张力和接触角数据
“原生储层流体”与“注入二氧化碳”之间的界面张力(IFT)以及储层岩石、原生储层流体和注入二氧化碳之间的接触角(CA)是决定相对渗透率和毛管压力特征的主要因素,而毛管压力特征又控制着储层和盖层中流体的流动和分布特征。本章全面回顾了与CO2封存相关的水/盐水/ CO2-石英/方解石/云母体系的IFT和CA数据的实验测量和理论预测的最新进展。讨论了用于生成IFT和CA数据的实验技术以及用于预测数据的分子模拟的细节。对不同研究组报告的IFT和CA数据进行了比较。讨论了已发表文献中分歧的可能原因,并为该领域的未来研究提出了建议,以解决潜在的技术问题,以获得可重复的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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