研究使用二氧化碳作为水力压裂液对水的可持续性和环境友好性

Sherif Fakher, Abdulaziz Fakher
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引用次数: 2

摘要

水力压裂是许多非常规页岩储层的开采工艺。在此过程中,将高压流体(通常是水)与支撑剂一起注入地层。压裂液破坏地层,从而增加其渗透率,支撑剂确保地层保持开放状态。尽管水力压裂非常有效,但也有一些局限性,包括依赖于水等非常有价值的商品。本研究考察了二氧化碳代替水作为压裂液的适用性,并研究了这种方法的主要优点和局限性。对影响二氧化碳基水力压裂适用性的主要性能进行了研究;这些因素包括二氧化碳性质、支撑剂性质、储层岩石、流体和热力学性质。这项研究旨在为未来研究二氧化碳作为压裂液在非常规油气储层中的适用性提供初步的介绍和路线图。
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Investigating the Use of CO2 as a Hydraulic Fracturing Fluid for Water Sustainability and Environmental Friendliness
Hydraulic fracturing is the process by which many unconventional shale reservoirs are produced from. During this process, a highly pressurized fluid, usually water, is injected into the formation with a proppant. The fracturing fluid breaks the formation thus increasing its permeability, and the proppant ensures that the formation remains open. Although highly effective, hydraulic fracturing has several limitations including relying on a highly valuable commodity such as water. This research investigates the applicability of carbon dioxide as a fracturing fluid instead of water, and studies the main advantages and limitation of such a procedure. The main properties that could have a strong impact on the applicability of carbon dioxide based hydraulic fracturing are studied; these factors include carbon dioxide properties, proppant properties, and reservoir rock, fluid, and thermodynamic properties. This research aims to function as an initial introduction and roadmap to future research investigating the applicability of carbon dioxide as a fracturing fluid in unconventional oil and gas reservoirs.
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