Diverting agents in the oil and gas industry: A comprehensive analysis of their origins, types, and applications

Q1 Earth and Planetary Sciences Petroleum Research Pub Date : 2024-03-01 DOI:10.1016/j.ptlrs.2023.09.004
Namrata Bist , Abhishek Nair , Kriti Yadav , Anirbid Sircar
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Abstract

During the life of a well, treatments are carried out to boost productivity by stimulating initially unproduced zones. These treatments include hydraulic fracturing, matrix acidization, and acid fracturing, among others. Hydraulic fracturing treatment is generally applied to deeper reservoirs of oil or natural gas for enhanced recovery. By infusing proppant, water, and chemicals under extreme pressure during the fracturing procedure, fissures in and beneath the reservoir layer can be accessed and expanded. Another stimulating procedure, matrix acidization, involves injecting acid down the drilling hole to permeate the rock fissures at stresses lower than the fracture stress. In addition, carbonate reservoir acid fracturing stimulation is commonly used as an acid treatment technique whereby a pressure greater than the formation disintegration pressure or spontaneous fracture closure pressure is used to compress acid into the reservoir. These treatments allow existing wells to sustain hydrocarbon production without new wells being drilled. Diverters, when employed efficiently, can prevent the need to use a rig to provide momentary physical barriers, thus lowering the cost of the workover. Recent improvements in diversion technology make use of a variety of degradable particles that act as momentary bridges, either at the perforation entries or inside the existing fractures. The aim of this study is to introduce different types of mechanical and chemical diverters used to enhance the productivity of wells. This study explains the concepts of different types of diverters and their applications in several formations, it will also help readers to understand the selection procedures based on the suitability and requirements of diverter use by case studies from around the world.

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石油和天然气工业中的分流剂:对其起源、类型和应用的全面分析
在油井寿命期间,通过刺激最初未开采的区域来提高生产率。这些处理方法包括水力压裂、基质酸化和酸性压裂等。水力压裂处理一般用于较深的石油或天然气储层,以提高采收率。在压裂过程中,通过在极高压力下注入支撑剂、水和化学品,可以进入并扩大储层中和储层下的裂缝。另一种刺激程序是基质酸化,即在钻孔中注入酸液,以低于裂缝应力的应力渗透岩石裂缝。此外,碳酸盐岩储层酸化致裂通常被用作一种酸处理技术,利用大于地层解体压力或自发裂缝闭合压力的压力将酸压缩到储层中。这些处理方法可使现有油井在不钻新井的情况下维持碳氢化合物的生产。有效使用分流器可以避免使用钻机提供瞬间物理屏障,从而降低修井成本。分流技术的最新改进利用了各种可降解颗粒,它们可以在射孔入口处或现有裂缝内起到瞬间桥梁的作用。本研究旨在介绍用于提高油井生产率的各种机械和化学分流器。本研究解释了不同类型分流器的概念及其在多种地层中的应用,还将通过世界各地的案例研究,帮助读者了解根据分流器的适用性和使用要求进行选择的程序。
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来源期刊
Petroleum Research
Petroleum Research Earth and Planetary Sciences-Geology
CiteScore
7.10
自引率
0.00%
发文量
90
审稿时长
35 weeks
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