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Titlebook: ICIPEG 2016; Proceedings of the I Mariyamni Awang,Berihun Mamo Negash,Abdul Ghani Md Conference proceedings 2017 Springer Nature Singapore

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楼主: invigorating
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Pressure-Transient Behavior of Injection/Falloff Testsollowing water–oil displacement, but it becomes insignificant as time increases. For gas injection period following both favorable and unfavorable water–oil mobility ratio displacement with positive skin, the pressure drop starts decreasing after sometime as the front approaches the skin zone bounda
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Evaluation of Bentonite Colloids for Potential Use as an In-Depth Fluid Diversion Agentaverage with less than 8 µm as the maximum diameter. These sizes fall in the range of existing IFD that often used for improving sweep efficiency in heterogeneous rock matrix. Bentonite dispersions exhibited a water-like viscosity at low concentrations studied, which is in favor of IFD. However, inc
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Investigating Effect of Chemical Composition on Emulsion Stability and Rag Layer Growth During Separmulsion. A series of batch and continuous experiments are utilized to investigate the effect of various ASP compositions on the coalescence rate, rag layer growth, rheological properties, and droplet size of the generated emulsion after ASP flooding.
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A Review on the Application of Ionic Liquids for Enhanced Oil Recoveryg the IFT values. This review indicates that further investigation is required to study the interphase behavior of ionic liquids in a more complex system where hydrocarbons, salts, surfactants, and other chemical additives are present. The alteration in behavior and system properties due to the inte
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Comparison Study on Anionic Surfactants and Mixed Surfactant Behavior in SAG Foam Process gas. The static tests were interpreted in terms of foam height, while the dynamic experiments were analyzed in terms of liquid recovery and pressure drop. The results show that the mixed surfactant has better efficiency compared to anionic surfactant. Furthermore, the behavior of foam reveals the c
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A Review on CO2 Foam for Mobility Control: Enhanced Oil Recovery surfactants have been produced with the objective to meet wide range of reservoir condition and for targeting difficult reservoir design and operating conditions. In this paper, recent experimental research for laboratory screening and evaluation of surfactant is highlighted and the foam mobility i
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ors from nano-second to second region are measured and modeled. Microscopic quantum electronic spin transport model and macroscopic stochastic magnetization dynamics model are combined to study spin torque induced magnetization switching. Coupled micro-magnetic model and dynamic circuit model are us
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