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Acid Fracturing Tight Gas Carbonates Reservoirs Using CO2 to Assist Stimulation Fluids:An Alternative to Less Water Consumption while Maintaining Productivity

机译:酸性压裂紧密气体碳酸盐储层使用CO2辅助刺激流体:在保持生产率的同时较少耗水量的替代品

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Conventional hydraulic fracture stimulation techniques have been widely used to enhance production from tight gas reservoirs.Since the initial use of this method to increase production rates,the industry has witnessed continued advancement in terms of fracturing theory,fluids,and techniques.The use of carbon dioxide(CO2)since the early 1960s has continued to be a significant part of these advances.CO2 has been used for many years as an energy source to aid fluid recovery of well stimulation fluids.This technology predominantly has been used to stimulate tight sandstone reservoirs.There are very limited applications for low permeable tight carbonate reservoirs because of complexities associated with the physical and mechanical properties of carbonate rocks and its interaction with fracturing fluid.Nevertheless,the advantages of using assisted CO2 stimulation fluids as the elimination of potential formation damage normally associated with fracturing fluids and very rapid cleanup are still present. This paper outlines one of the first acid fracturing jobs assisted with CO2 conducted on a tight gas well reservoir in Saudi Arabia.It describes in a simple manner the screening methodology and key parameters considered during selection of a well candidate and the design process,which was based on petrophysical, mechanical,and chemistry properties of the formation and the respective interaction with treatment fluids. Moreover,primary operational procedures and guidelines are discussed,highlighting a safety risk assessment point of view. Implementing this technique in a more generalized manner in the field can help save considerable operational time and costs.CO2 used to energized fracturing fluids can increase the productivity of the well while using less water and less acid than conventional acid fracturing,which is of primary importance in such a harsh environment,requiring less water consumption.
机译:传统的液压骨折刺激技术已被广泛用于增强从紧的气体储层生产的生产。初步使用这种方法来提高产量,该行业在压裂理论,液体和技术方面持续推进。碳的使用二氧化碳(二氧化碳)自20世纪60年代初期继续成为这些预付款的重要组成部分.CO2已被使用多年来作为一种能源,以帮助流体恢复良好的刺激流体。这主要是用于刺激紧密砂岩储层由于与碳酸盐岩石的物理和机械性能相关的复杂性及其与压裂液的相互作用相关的复杂性是非常有限的。无论如何,使用辅助CO2刺激流体通常通常使用潜在地层损坏的优点与压裂液相关和非常快速的清理有关STIL我呈现。本文概述了辅助在沙特阿拉伯的紧的气井水库上进行的第一个酸性压裂工作之一。它以简单的方式描述了在选择井的候选人和设计过程中考虑的筛选方法和关键参数基于形成的岩石物理,机械和化学性质及其与处理流体的相互作用。此外,讨论了主要运营程序和指南,突出了安全风险评估的观点。以更广泛的方式在现场实施该技术可以帮助节省相当大的运算时间和成本。用于通电压裂流体的成本可以增加井的生产率,同时使用较少的水和少于常规酸性压裂,这是主要重要性的在这种恶劣的环境中,需要较少的耗水量。

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