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Well Logging, Petrophysics, and Formation Evaluation
Journal Paper
Simultaneous Assessment of Wettability and Water Saturation Through Integration of 2D NMR and Electrical Resistivity Measurements
SPE Res Eval & Eng 26 (01): 1–14.
https://doi.org/10.2118/201519-PA
Journal Paper
Fluid Identification Derived from Formation Chlorine Measurements and Reservoir Characterization of Tight Carbonate in Sichuan Basin, China
SPE Res Eval & Eng 26 (01): 15–22.
https://doi.org/10.2118/205926-PA
Journal Paper
Electrical, Diffusional, Hydraulic, and Geometrical Tortuosity Anisotropy Quantification Using 3D Computed Tomography Scan Image Data
SPE Res Eval & Eng 26 (01): 23–39.
https://doi.org/10.2118/206109-PA
Experimental Research, Theory, and Core Studies/Analysis
Journal Paper
Shale Wettability: Untangling the Elusive Property with an Integrated Imbibition and Imaging Technique and a New Hypothetical Theory
SPE Res Eval & Eng 26 (01): 40–50.
https://doi.org/10.2118/212276-PA
Unconventional Resource/Reservoir Studies, Enhanced Recovery, and Modeling
Journal Paper
Water Imbibition and Oil Recovery in Shale: Dynamics and Mechanisms Using Integrated Centimeter-to-Nanometer-Scale Imaging
SPE Res Eval & Eng 26 (01): 51–63.
https://doi.org/10.2118/210567-PA
Journal Paper
Broad Ion Beam–Scanning Electron Microscopy Characterization of Organic Porosity Evolution During Thermal Treatment of Bazhenov Shale Sample
SPE Res Eval & Eng 26 (01): 64–74.
https://doi.org/10.2118/210599-PA
Improved Oil Recovery, Waterflooding, and Phase Behavior
Journal Paper
Oil Recovery by Low-Rate Waterflooding in Low-Permeability Water-Wet Sandstone Cores
SPE Res Eval & Eng 26 (01): 75–87.
https://doi.org/10.2118/209688-PA
Journal Paper
Catanionic Surfactants for Improving Oil Production in Carbonate Reservoirs
SPE Res Eval & Eng 26 (01): 88–98.
https://doi.org/10.2118/200182-PA
Enhanced Oil Recovery, Heavy Oil, and CO2 Applications
Journal Paper
An Extended Unified Viscoelastic Model for Predicting Polymer Apparent Viscosity at Different Shear Rates
SPE Res Eval & Eng 26 (01): 99–121.
https://doi.org/10.2118/206010-PA
Journal Paper
New Insights into the Understanding of In-Situ Combustion: Important Considerations When Modeling the Process
SPE Res Eval & Eng 26 (01): 122–138.
https://doi.org/10.2118/212268-PA
Journal Paper
Athabasca Toe-to-Heel Air Injection Pilot: Evaluation of the Spontaneous Ignition Based on Apparent Atomic Hydrogen-Carbon Ratio Variation
SPE Res Eval & Eng 26 (01): 139–151.
https://doi.org/10.2118/212267-PA
Journal Paper
Progress Toward Pilot-Scale Simulation of In-Situ Combustion Incorporating Geomechanics
SPE Res Eval & Eng 26 (01): 152–166.
https://doi.org/10.2118/212266-PA
Journal Paper
Comparative Study of In-Situ Combustion Tests on Consolidated and Crushed Cores
SPE Res Eval & Eng 26 (01): 167–179.
https://doi.org/10.2118/212270-PA
Journal Paper
In-Situ Combustion: Myths and Facts
SPE Res Eval & Eng 26 (01): 180–189.
https://doi.org/10.2118/210606-PA
Special Topics in Reservoir Evaluation and Engineering
Journal Paper
Methods to Enhance Success of Field Application of In-Situ Combustion for Heavy Oil Recovery
SPE Res Eval & Eng 26 (01): 190–197.
https://doi.org/10.2118/210600-PA
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