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一种评估微乳液在含油储层中改善一致性适用性的实验工作流程。

An experimental workflow to assess the applicability of microemulsions for conformance improvement in oil-bearing reservoir.

作者信息

Pal Nilanjan, Alzahid Yara, AlSofi Abdulkareem M, Ali Muhammad, Yekeen Nurudeen, Hoteit Hussein

机构信息

Ali I. Al-Naimi Petroleum Engineering Research Center (ANPERC), Physical Science & Engineering Division, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

Department of Petroleum Engineering & Earth Sciences, Indian Institute of Petroleum and Energy (IIPE), Visakhapatnam, India.

出版信息

Heliyon. 2023 Jun 27;9(7):e17667. doi: 10.1016/j.heliyon.2023.e17667. eCollection 2023 Jul.

Abstract

A comprehensive workflow approach is necessary to link multiple experimental tasks and identify microemulsion (ME) formulations with 'optimal' stability, displacement behavior and technical feasibility in the petroleum industry. In this paper, a systematic approach is described with the aid of a case study which involves the formulation of an anionic sodium dodecyl sulfate-based microemulsion. The design of such ME systems requires a proper methodology, substantial laboratory work, and functional assessment from research/industrial viewpoints. The surfactant has been screened in terms of its micellization potential, followed by phase behavior analysis and Winsor classification of prepared microemulsions. The desired composition(s) are characterized via several tools to determine droplet size, morphology, oil/water solubilization potentials and salinity scan results. The suitability of the microemulsion system for conformance improvement technology (CIT) is proposed to be assessed via physicochemical evaluation studies encompassing two attributes: rheology and stability. For a favorable 'conforming' drive, the microemulsion must exhibit phase stability, sufficient injectivity, and moderate-to-high viscosity under shear. Technical assessment by the industry and research team must also include factors related to cost, availability of chemicals, environmental degradation, and reservoir considerations. The article demonstrates a comprehensive all-inclusive workflow methodology to design and formulate surfactant-stabilized microemulsions via case study analysis for application in CIT. This represents a sound approach to identifying efficient, cost-effective injection fluid systems and provides a framework to identify useful parameters for ME formulation design and employ the proposed (effective) strategy for conformance control.

摘要

采用综合工作流程方法来关联多个实验任务,并在石油工业中确定具有“最佳”稳定性、驱替行为和技术可行性的微乳液(ME)配方是很有必要的。本文借助一个案例研究描述了一种系统方法,该案例研究涉及基于阴离子十二烷基硫酸钠的微乳液配方。此类微乳液体系的设计需要适当的方法、大量的实验室工作以及从研究/工业角度进行功能评估。首先根据表面活性剂的胶束化潜力进行筛选,然后对制备的微乳液进行相行为分析和温莎分类。通过多种工具对所需配方进行表征,以确定液滴尺寸、形态、油/水增溶潜力和盐度扫描结果。建议通过包含流变学和稳定性这两个属性的物理化学评估研究来评估微乳液体系对提高波及效率技术(CIT)的适用性。为了实现良好的“波及”驱动,微乳液必须表现出相稳定性、足够的注入性以及在剪切作用下具有中等到高的粘度。行业和研究团队的技术评估还必须包括与成本、化学品可用性、环境降解和储层因素相关的内容。本文通过案例研究分析展示了一种全面的、涵盖所有方面的工作流程方法,用于设计和配制表面活性剂稳定的微乳液,以应用于提高波及效率技术。这是一种确定高效、经济有效的注入流体系统的合理方法,并提供了一个框架,用于确定微乳液配方设计的有用参数,并采用所提出的(有效)策略进行波及控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/021f/10395013/71da4dd5d6ef/ga1.jpg

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