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Experimental and computational advances on the study of Viscous Fingering: An umbrella review

机译:粘性手术研究的实验和计算进展:伞综述

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摘要

During the production of heavy oil reservoirs, the movement of the fluids, namely oil and water, significantly affects the production rates. This movement is influenced by the mobility ratio and directly affects variables such as The Water-Oil-Ratio (WOR), production costs, and recovery factor (RF). Moreover, Viscous Fingering, a phenomenon that describes the fluid movement through porous media, has been identified as the root cause of high-water production rates. Studying and comprehending this phenomenon is necessary to understand Oil & Gas companies' challenges nowadays to produce heavy oil. For example, this phenomenon has a direct impact on the assets managed by Enhanced Oil Recovery Techniques (EOR) that involves the injection of fluids such as polymer, water, and CO2 flooding, SAGD, VAPEX, CSP and ECSP, among others. Due to its importance, this paper review and highlights the main computational and experimental studies for over more than 30 years (from the late 1980s) about Viscous Fingering, especially in the oil industry. Also, the need for further studies involving the newest experimental and computational technologies and new novel methodologies for the comprehension of Viscous Fingering is discussed. This review aims to give an overview of the technological developments in the study of Viscous Fingering, not only to understand it but also to illustrate how scientists have been developing new technologies to overcome the consequences caused by this phenomenon.
机译:在生产稠油油藏,流体,即油和水的运动,显著影响生产速度。该运动由迁移率比的影响,并直接影响变量,例如水 - 油比(WOR),生产成本,以及恢复因子(RF)。此外,粘性指,描述通过多孔介质的流体移动的现象,已被确定为高水生产速率的根本原因。学习理解这一现象有必要了解时下油气公司所面临的挑战,以生产重油。例如,这种现象已经涉及流体,如聚合物,水和CO2驱,SAGD,VAPEX,CSP和ECSP等等的注入对提高石油采收率技术(EOR)所管理的资产有直接的影响。由于其重要性,本文回顾和亮点主要计算和实验研究超过30年以上(从20世纪80年代末)大约粘性指,尤其是在石油行业。此外,需要对涉及的粘性指的理解最新的实验和计算技术和新方法的新颖进一步研究讨论。这次审查的目的给予的技术发展的概述粘性指的研究,不仅要了解它同时也说明如何科学家们一直在开发新技术,克服了这一现象的后果。

著录项

  • 期刊名称 Heliyon
  • 作者单位
  • 年(卷),期 2021(7),7
  • 年度 2021
  • 页码 e07614
  • 总页数 29
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:粘性指法;可混溶和不混溶的位移;实验和计算研究;

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