His main research concerns Petroleum engineering, Enhanced oil recovery, Chemical engineering, Composite material and Chromatography. His studies deal with areas such as Low salinity, Enhanced recovery and Residual oil saturation as well as Petroleum engineering. His research in Enhanced oil recovery intersects with topics in Nanoparticle, Monomer, Adsorption and Polyacrylamide.
His work on Wetting as part of general Chemical engineering research is frequently linked to Imbibition and Resistance Factors, thereby connecting diverse disciplines of science. His Composite material research is multidisciplinary, incorporating perspectives in Sweep efficiency and Permeability. His Chromatography research integrates issues from Dilution, Injection well, Hydrocarbon and Spark plug.
The scientist’s investigation covers issues in Petroleum engineering, Chemical engineering, Enhanced oil recovery, Composite material and Permeability. In his research, Hydraulic fracturing is intimately related to Oil shale, which falls under the overarching field of Petroleum engineering. The study incorporates disciplines such as Surface tension, Polymer and Porous medium in addition to Chemical engineering.
His work deals with themes such as Wetting, Nanoparticle, Carbonate and Low permeability, which intersect with Enhanced oil recovery. The Fracture research Baojun Bai does as part of his general Composite material study is frequently linked to other disciplines of science, such as Water flow, therefore creating a link between diverse domains of science. He interconnects Porosity and Chromatography in the investigation of issues within Permeability.
Baojun Bai spends much of his time researching Chemical engineering, Enhanced oil recovery, Petroleum engineering, Oil shale and Tight oil. His research in Chemical engineering intersects with topics in Polymer gel and Surface tension. His work carried out in the field of Enhanced oil recovery brings together such families of science as Wetting, Natural gas, Nanoparticle, Carbonate and Adsorption.
His research investigates the connection between Wetting and topics such as Contact angle that intersect with issues in Work. His research integrates issues of Shale oil, Permeability and Unconventional oil in his study of Petroleum engineering. The concepts of his Oil shale study are interwoven with issues in Porosity, Volume, Hydraulic fracturing, Desorption and Methane.
Baojun Bai focuses on Chemical engineering, Enhanced oil recovery, Pulmonary surfactant, Emulsion and Contact angle. In general Chemical engineering study, his work on Nanoparticle and Self-healing hydrogels often relates to the realm of Water production, thereby connecting several areas of interest. Enhanced oil recovery is a primary field of his research addressed under Petroleum engineering.
His Petroleum engineering research incorporates elements of Saturation, API gravity, Polymer flood and Petroleum industry. Baojun Bai interconnects Cellulose, Regenerated cellulose, Surface-active agents and Oil water in the investigation of issues within Emulsion. He combines subjects such as Wetting, Work and Brine with his study of Contact angle.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Preformed Particle Gel for Conformance Control: Factors Affecting Its Properties and Applications
Baojun Bai;Liangxiong Li;Yuzhang Liu;He Liu.
Spe Reservoir Evaluation & Engineering (2007)
Preformed Particle Gel for Conformance Control: Transport Mechanism Through Porous Media
Baojun Bai;Yuzhang Liu;Jean-Paul Coste;Liangxiong Li.
Spe Reservoir Evaluation & Engineering (2007)
Preformed Particle Gel for Conformance Control: Factors Affecting its Properties and Applications
Baojun Bai;Liangxiong Li;Yuzhang Liu;Zhongguo Wang.
SPE/DOE Symposium on Improved Oil Recovery (2004)
A comprehensive review of polyacrylamide polymer gels for conformance control
Baojun Bai;Jia Zhou;Mingfei Yin.
Petroleum Exploration and Development (2015)
Engineering Bacteria for Production of Rhamnolipid as an Agent for Enhanced Oil Recovery
Qinhong Wang;Xiangdong Fang;Baojun Bai;Xiaolin Liang.
Biotechnology and Bioengineering (2007)
Rock characterization of Fayetteville shale gas plays
Baojun Bai;Malek Elgmati;Hao Zhang;Mingzhen Wei.
Fuel (2013)
Analysis of EOR Projects and Updated Screening Criteria
Ahmad Al Adasani;Ahmad Al Adasani;Baojun Bai.
Journal of Petroleum Science and Engineering (2011)
Preformed-Particle-Gel Transport Through Open Fractures and Its Effect on Water Flow
Baojun Bai;Hao Zhang.
Spe Journal (2011)
Polymer Gel Systems for Water Management in High-Temperature Petroleum Reservoirs: A Chemical Review
Daoyi Zhu;Daoyi Zhu;Baojun Bai;Baojun Bai;Jirui Hou.
Energy & Fuels (2017)
In-Depth Fluid Diversion by Pre-Gelled Particles. Laboratory Study and Pilot Testing.
J.-P. Coste;Y. Liu;B. Bai;Y. Li.
SPE/DOE Improved Oil Recovery Symposium (2000)
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