标题: | A review of recent advances in foam-based fracturing fluid application in unconventional reservoirs |
时间: | 2020-06-30 13:00:06 |
DOI: | 10.1016/j.jiec.2018.05.039 |
大小: | 2328 kb |
页数: | 28 PAGES |
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目录:
- A review of recent advances in foam-based fracturing fluid application in unconventional reservoirs
- Introduction
- Conventional fracturing fluids
- Water-based fluids
- Gas fracturing fluids
- Foam-based fracturing fluids
- Types of foam-based fluids
- Advantages and limitations of foam-based fracturing fluids
- Recent advances in foam-based fracturing fluids
- Viscoelastic surfactant (VES) foam fracturing fluids
- Nanoparticles-stabilized foam fracturing fluid
- Rheological properties of foam fracturing fluids
- Yield stress and foam elasticity
- Parameters influencing the rheological properties of foam fracturing fluids
- Influence of foam quality
- Influence of temperature
- Influence of pressure
- Influence of shear rate
- Influence of bubble texture
- Flow friction resistance of foamed fluids (foam–channel wall interactions)
- Experimental methods of studying foam fracturing fluids performance
- Foam stability experiments
- Experimental study of foam rheological properties
- Proppant carrying capacity of foam fracturing fluid
- Discussion of previous literature on proppant carrying capacity of foam
- Experimental study of proppant settling and transportation by foam
- Modelling and simulation studies of foam-based fracturing fluids
- Field applications of foam fracturing fluids
- Polymer-enhanced CO2 foam applications in Frio and Wilcox Formation
- CO2-foam and N2-foam applications in Arkansas–Louisiana–Texas region
- Field applications of foam fracturing fluid in western Canadian sedimentary basin
- Field applications of foam fracturing fluid in Huron shale
- Field applications of foam fracturing fluid in heritage Montney formation
- Field applications of foam fracturing fluid in WD field in the eastern province of Saudi Arabia
- Conclusions and recommendations
- Acknowledgment
- References
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