Enhanced heavy and extra heavy oil recovery: Current status and new trends

IF 4.2 Q2 ENERGY & FUELS
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引用次数: 0

Abstract

Due to the increased demand for energy resources these days, especially due to the Russian-Ukrainian war, the focus of the major countries is turning strongly towards improving oil production, especially heavy and extra heavy oil, which represents 40% of the world oil reserve. Steam-based and thermal (EOR) procedures are promising techniques for recovering heavy oil reservoirs, but they suffer from a sequence of problems and complications that arise after long-term application. These complications comprise steam breakthrough, steam overlap, and steam/rock interactions. This research presents the currently applied techniques to maximize the productivity of heavy oil, such as steam injection, cyclic steam stimulation, in-situ combustion, and steam-assisted gravity drainage. Thermal technologies face numerous obstacles, as they are energy and water-intensive processes that are not environmentally friendly. The research also presents future trends in energy-saving and environmentally friendly techniques that enhance heavy oil recovery through vapor extraction (VAPEX) steam-solvent hybrid techniques, electromagnetic energy, sonication, and nanotechnology. The findings of this review reported that all the presented techniques focus on how to reduce the oil viscosity and in-situ upgrade the crude oil properties. In turn, these enhance both the productivity rate and oil recovery and minimize the production cost. This article can be considered a comprehensive review of thermal recovery methods in heavy and extra-heavy oil, in addition to screening criteria used for each method.

强化重油和特重油开采:现状和新趋势
由于最近能源需求的增加,特别是俄乌战争的爆发,主要国家的关注点正强烈转向提高石油产量,尤其是占世界石油储量 40% 的重油和特重油。蒸汽法和热法(EOR)是采收重油储层的有前途的技术,但在长期应用后会出现一系列问题和并发症。这些复杂问题包括蒸汽突破、蒸汽重叠以及蒸汽/岩石相互作用。本研究介绍了目前用于最大限度提高重油生产率的技术,如蒸汽注入、循环蒸汽刺激、原地燃烧和蒸汽辅助重力泄油。热技术面临诸多障碍,因为它们是能源和水密集型工艺,对环境不友好。研究还介绍了通过蒸汽萃取(VAPEX)、蒸汽-溶剂混合技术、电磁能、超声和纳米技术提高重油采收率的节能环保技术的未来发展趋势。本综述的研究结果表明,所有介绍的技术都侧重于如何降低石油粘度和就地改善原油特性。反过来,这些技术既能提高生产率和石油采收率,又能最大限度地降低生产成本。本文可被视为对重油和特重油热采方法的全面综述,此外还介绍了每种方法所使用的筛选标准。
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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来源期刊
Petroleum
Petroleum Earth and Planetary Sciences-Geology
CiteScore
9.20
自引率
0.00%
发文量
76
审稿时长
124 days
期刊介绍: Examples of appropriate topical areas that will be considered include the following: 1.comprehensive research on oil and gas reservoir (reservoir geology): -geological basis of oil and gas reservoirs -reservoir geochemistry -reservoir formation mechanism -reservoir identification methods and techniques 2.kinetics of oil and gas basins and analyses of potential oil and gas resources: -fine description factors of hydrocarbon accumulation -mechanism analysis on recovery and dynamic accumulation process -relationship between accumulation factors and the accumulation process -analysis of oil and gas potential resource 3.theories and methods for complex reservoir geophysical prospecting: -geophysical basis of deep geologic structures and background of hydrocarbon occurrence -geophysical prediction of deep and complex reservoirs -physical test analyses and numerical simulations of reservoir rocks -anisotropic medium seismic imaging theory and new technology for multiwave seismic exploration -o theories and methods for reservoir fluid geophysical identification and prediction 4.theories, methods, technology, and design for complex reservoir development: -reservoir percolation theory and application technology -field development theories and methods -theory and technology for enhancing recovery efficiency 5.working liquid for oil and gas wells and reservoir protection technology: -working chemicals and mechanics for oil and gas wells -reservoir protection technology 6.new techniques and technologies for oil and gas drilling and production: -under-balanced drilling/gas drilling -special-track well drilling -cementing and completion of oil and gas wells -engineering safety applications for oil and gas wells -new technology of fracture acidizing
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