用多频介电测量评价岩石润湿性:基本概念和实验方法综述

2区 工程技术 Q1 Earth and Planetary Sciences
Ali Oshaish , Amjed Hassan , Mohamed Mahmoud , Ammar El-Husseiny , Salah Al-Ofi , Ahmed Al-Yaseri
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引用次数: 1

摘要

电介质方法被认为是在表征耗散介质方面具有潜力的测量方法之一,耗散介质在其组成元件中具有电对比度。最近,有一些引人注目的研究和开发活动旨在将介电响应与不同的岩石物理性质联系起来。润湿性被认为是许多油藏工程方面的关键参数,包括评价油藏性能和设计提高采收率的工艺。岩石润湿性控制着固体颗粒和离子耗散流体之间的大部分电化学相互作用。这些相互作用为介电测量提供了一个极好的环境,以显示在交变频率影响下的一些色散机制。本文对介电法在润湿性评价中的应用进行了全面的综述。大多数被审查的研究要么是对这种关系的定性调查,要么是基于许多输入的介电测量的经验预测模型,这些输入在大多数时候都不可用。尽管在这一领域已经做了大量工作,但仍有一些差距可以改进和弥补。润湿性仍然没有通过介电测量中的可测量指标进行定量探索,例如,没有基于介电方法开发润湿性指数。因此,电介质可以提供有效、准确和经济的润湿性指数,该指数可以在工业中实施。总的来说,这项工作旨在回顾文献,并为通过介电测量量化润湿性指数铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the rock wettability using multi-frequency dielectric measurements: A review on the fundamental concept and experimental approach

The dielectric approach is considered as one of the measurements that have potential in characterizing dissipative mediums which have an electrical contrast in their comprising elements. Recently, there have been remarkable research and development activities aiming to link dielectric responses to different petrophysical properties. Wettability is considered a key parameter in many reservoir engineering aspects including evaluating reservoir performance and designing enhanced oil recovery processes. The rock wettability controls the majority of the electrochemical interactions between the solid grain and the ionically-dissipative fluid. These interactions provide an excellent environment for dielectric measurements to display some dispersion mechanisms under the influence of alternating frequency. This paper presents a comprehensive review on the use of the dielectric approach for wettability evaluation. The majority of the reviewed studies were either a qualitative investigation of this relationship or empirical prediction models for the dielectric measurements based on many inputs which are not available most of the time. Even though significant work has been done in this area, there are still gaps that can be improved and fulfilled. Wettability was still not explored quantitatively through a measurable indicator from the dielectric measurements, for example, no wettability index was developed based on the dielectric approach. Therefore, dielectric could provide an efficient, accurate, and economical wettability index that can be implemented in the industry. Overall, this work aims to review the literature and pave the road for quantifying the wettability index via dielectric measurements.

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来源期刊
Journal of Petroleum Science and Engineering
Journal of Petroleum Science and Engineering 工程技术-地球科学综合
CiteScore
11.30
自引率
0.00%
发文量
1511
审稿时长
13.5 months
期刊介绍: The objective of the Journal of Petroleum Science and Engineering is to bridge the gap between the engineering, the geology and the science of petroleum and natural gas by publishing explicitly written articles intelligible to scientists and engineers working in any field of petroleum engineering, natural gas engineering and petroleum (natural gas) geology. An attempt is made in all issues to balance the subject matter and to appeal to a broad readership. The Journal of Petroleum Science and Engineering covers the fields of petroleum (and natural gas) exploration, production and flow in its broadest possible sense. Topics include: origin and accumulation of petroleum and natural gas; petroleum geochemistry; reservoir engineering; reservoir simulation; rock mechanics; petrophysics; pore-level phenomena; well logging, testing and evaluation; mathematical modelling; enhanced oil and gas recovery; petroleum geology; compaction/diagenesis; petroleum economics; drilling and drilling fluids; thermodynamics and phase behavior; fluid mechanics; multi-phase flow in porous media; production engineering; formation evaluation; exploration methods; CO2 Sequestration in geological formations/sub-surface; management and development of unconventional resources such as heavy oil and bitumen, tight oil and liquid rich shales.
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