
作者:刘月亮 孟思炜 芮振华 陈文征 等
书号:ISBN 978-7-5636-8296-6
出版时间:2024年12月
开本:16开
字数:618千字
定价:152.00元

本书为2024年度国家出版基金项目。全书为英文版,共分五章,主要阐述二氧化碳利用与封存技术在非常规油藏中的应用,系统介绍页岩储层中二氧化碳压裂增产与封存机理、模拟及效果评价,凝胶在二氧化碳驱替与地质封存中的应用,致密砂岩中二氧化碳利用与封存协同优化,二氧化碳提高油气采收率与封存协同中新型化学添加剂的使用及评价等内容。

Chapter 1 CO2 Fracturing for Production Enhancement and Sequestration
1.1 Mechanism and Potential of Carbon Storage by CO2 Fracturing in Shale Reservoirs
1.2 Evolutionary Laws of Mechanical Properties During CO2 Fracturing in Shale Reservoirs
1.3 Phase-Field Method of Crack Branching During SC-CO2 Fracturing
1.4 Evaluation of Supercritical CO2 Anhydrous Fracturing Effect in the Hong 87-9 Block
1.5 Comprehensive Evaluation on the Stimulation and Sequestration Effect of CO2 Waterless Fracturing in Tight Oil Reservoir
1.6 Field Practices of CO2 Waterless Fracturing eferences
References
Chapter 2 Applications of Gels in CO2 Geological Storage
2.1 Development and Applications of CO2-Responsive Gels in CO2 Flooding and Geological Storage
2.2 Importance of Conformance Control in Reinforcing Synergy of CO2-EOR and Sequestration
2.3 Innovative Zoning Control Techniques for Optimizing a Megaton-Scale CCUS-EOR Project with Large-Pore-Volume CO2 Flooding
References
Chapter 3 Molecular Simulation Scale
3.1 Research Basis for Enhanced Recovery in Shale Oil and Gas Reservoirs
3.2 SLD Theory-Based Analysis of Shale Hydrocarbon Adsorption for Reservoir Evaluation
3.3 Selective Adsorption of CO2/CH4 Mixture on Clay-Rich Shale using Molecular Simulations
3.4 Dual Nanopores Dynamics of CO2 Huff and Puff: Molecular Insights into Shale Oil Recovery and Carbon Storage
3.5 Competitive Adsorption Behavior of Hydrocarbon(s)/CO2 Mixtures in a Double-Nanopore System Using Molecular Dynamic Simulations
References
Chapter 4 Simulation of the Synergistic Mechanism of CO2-EOR and Storage
4.1 Effects of Ion Concentrations on the Dissolution of Carbonate Minerals in CO2-Brine-Carbonate Systems
4.2 Synergistic Optimization of CO2 Utilization and Storage in Tight Sandstone Reservoirs
4.3 An Integrated Framework for Geothermal Energy Storage with CO2 Sequestration and Utilization
4.4 Comparison of PR-EOS with Capillary Pressure Model with Engineering Density Functional Theory in Describing the Phase Behavior of Confined Hydrocarbons
References
Chapter 5 Novel Chemical Additives for Synergistic CO2-EOR and Storage
5.1 A Storage-Driven CO2-EOR for Net-Zero Emission Target
5.2 Using Propanol as an Additive to CO2 for Improving CO2 Utilization and Storage in Oil Reservoirs
5.3 A Chemical Approach for Synergizing CO2 Utilization and Geological Storage in Low-Permeability Reservoirs
References
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