The Enhanced Oil Recovery Series delivers a multivolume approach that addresses the latest research on various types of EOR. The second volume in the series, Gas Injection Methods, helps engineers focus on the latest developments in one of the fastest growing areas. Different techniques are described in addition to the latest technology such as data mining and unconventional reservoirs. Supported field case studies are included to show a bridge between research and practical application, making it useful for both academics and practicing engineers. Structured to start with an introduction on various gas types and different gas injection methods, screening criteria for choosing gas injection method, and environmental issues during gas injection methods, the editors then advance on to more complex content, guiding the engineer into newer topics involving CO2 such as injection in tight oil reservoirs, shale oil reservoirs, carbonated water, data mining, and formation damage. Supported by a full spectrum of contributors, this book gives petroleum engineers and researchers the latest research developments and field applications to drive innovation for the future.
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Zhaomin Li is currently a professor and vice president of China University of Petroleum (East China). His research interests are in oil production engineering theory and technology, application of foam fluids in oil and gas development, and heavy oil. He is also an executive director of the Shandong Petroleum Institute in foam fluids and vice chairman of the Shandong Ocean Development Research Association. He has won many awards and received funding for more than 50 national scientific research projects. He has obtained 68 invention patents, including 7 US patents. He earned a PhD from the China University of Petroleum (Beijing), an MS from Shandong University, and a BS from the University of Shanghai for Science and Technology.
Maen Husein is currently a professor in the Department of Chemical and Petroleum Engineering at the University of Calgary. He earned a Bachelor of Engineering in chemical engineering from the Jordan University of Science and Technology, an MSc and PhD, both in chemical engineering from McGill University. Dr. Husein was a visiting professor at China University of Petroleum, East (2019–22). He is a member of the APEGA and has earned several awards and nearly 30 funding research opportunities.
Abdolhossein Hemmati-Sarapardeh is currently an assistant professor at Shahid Bahonar University of Kerman. He is also an adjunct professor at Jilin University and Northeast Petroleum University in China. He was previously a visiting scholar at the University of Calgary. He earned a PhD in petroleum engineering from Amirkabir University of Technology, an MSc in hydrocarbon reservoir engineering from the Sharif University of Technology, and a BSc in petroleum engineering from the Amirkabir University of Technology. His research interests include enhanced oil recovery processes, heavy oil systems, nanotechnology, and applications of intelligent models in the petroleum industry. Abdolhossein has been awarded as a distinguished graduate MSc student, was an honor PhD student, and a recipient of the National Elites Foundation Scholarship. He works as an associate professor in the Journal of Petroleum Science and Engineering. He has published over 150 journal articles, three books, several conference proceedings, and earned one patent in 2016.
Enhanced oil recovery continues to advance and innovate to meet future oil and gas demands, but engineers often search through multiple sources to obtain the latest research, technology, and applications. Enhanced Oil Recovery Series delivers a multi-volume approach that addresses the latest research on various types of EOR. The first volume in the series, Gas Injection Methods, helps engineers focus on the latest developments in one fast-growing area. Different techniques are described in addition to the latest technology such as nanotechnology application, data mining, and unconventional reservoirs. Supported field case studies are included to show a bridge between research and practical application, making it useful for both academics and practicing engineers. Structured to start with an introduction on characterization techniques, properties, and foam stability, the editors then advance on to more complex content, guiding the engineer into newer topics involving CO2 such as injection in tight oil reservoirs, and formation damage. Supported by a full spectrum of contributors, Enhanced Oil Recovery Series: Gas Injection Methods gives petroleum engineers and researchers the latest research developments and field applications to drive innovation for the future.
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Zustand: New. InhaltsverzeichnisSection I: Gas Injection1. Introduction to gas flooding technique: fundamental and applications2. Cyclic gas injection3. CO2 immiscible injection4. CO2 miscible flooding5. CO2 huff and puff6. CO2. Artikel-Nr. 525280709
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Taschenbuch. Zustand: Neu. Neuware - The Enhanced Oil Recovery Series delivers a multivolume approach that addresses the latest research on various types of EOR. The second volume in the series, Gas Injection Methods, helps engineers focus on the latest developments in one of the fastest growing areas. Different techniques are described in addition to the latest technology such as data mining and unconventional reservoirs. Supported field case studies are included to show a bridge between research and practical application, making it useful for both academics and practicing engineers. Structured to start with an introduction on various gas types and different gas injection methods, screening criteria for choosing gas injection method, and environmental issues during gas injection methods, the editors then advance on to more complex content, guiding the engineer into newer topics involving CO2 such as injection in tight oil reservoirs, shale oil reservoirs, carbonated water, data mining, and formation damage. Supported by a full spectrum of contributors, this book gives petroleum engineers and researchers the latest research developments and field applications to drive innovation for the future. Artikel-Nr. 9780128223024
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