Confined Fluid Phase Behavior and CO2 Sequestration in Shale Reservoirs delivers the calculation components to understand pore structure and absorption capacity involving unconventional reservoirs. Packed with experimental procedures, step-by-step instructions, and published data, the reference explains measurements for capillary pressure models, absorption behavior in double nano-pore systems, and the modeling of interfacial tension in C02/CH4/brine systems. Rounding out with conclusions and additional literature, this reference gives petroleum engineers and researchers the knowledge to maximize productivity in shale reservoirs.
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Yueliang Liu PhD is an assistant professor at the China University of Petroleum. He earned his PhD-degree in petroleum engineering at the University of Alberta. His research interests include phase behavior of fluids confined in nanopores, phase behavior of confined fluids in porous media, adsorption behavior of hydrocarbon and non-hydrocarbons in organic-rich or mineral pores, and CO2 enhanced oil/gas recovery. Liu has authored or coauthored more than 50 technical papers. He has applied for 5 invention patents. He is a member of the Editorial Board for the Journal of Petroleum Science. Liu is a member of Society of Petroleum Engineers.
Zhenhua Rui is Distinguished Chair Professor and Associate Dean of the College of Carbon Neutrality Future Technology at the China University of Petroleum (Beijing), Co-founder of MIT AB, SPE Distinguished Member. He was a Research Scientist at the Massachusetts Institute of Technology (MIT). He has published over 80 papers in the energy field and is a recipient of the SPE International Outstanding Service Award, SPE Technical Award, SPE Peer Apart Award, and Albert Nelson Marquis Lifetime Achievement.
Petroleum engineers are gaining better understanding of shale reservoirs but are still learning differences in calculating phase behavior to accurately determine distribution of shale fluids. Phase Behavior, Adsorption/Desorption Behavior and Interfacial Properties of Fluids in Shale Reservoirs delivers the calculation components to understand pore structure and absorption capacity involving unconventional reservoirs. Packed with experimental procedures, step-by-step instructions, and published data, the reference explains measurements for capillary pressure models, absorption behavior in double nano-pore systems, and modeling of interfacial tension in C02/CH4/brine systems. Rounding out with conclusions and additional literature, this reference gives petroleum engineers and researchers the knowledge to maximize productivity of shale reservoirs.
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