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Introduction to Modeling, Simulation and Optimization of CO2 Sequestration in Various Types of Reservoirs

Autor Ramesh Agarwal, Danqing Liu
en Limba Engleză Paperback – 27 noi 2024
Carbon capture and sequestration has become an essential technology for addressing the mitigation of global warming and adverse climate change due to increasing CO2 emissions from fossil fuel combustion worldwide. However, the scientific/engineering community still lacks thorough and practical knowledge about various types of reservoirs capable of effective long-term CO2 sequestration. Introduction to Modeling, Simulation, and Optimization of CO2 Sequestration in Various Types of Reservoirs pulls together the relevant basic scientific knowledge and applications to help reservoir engineering practitioners learn and utilize the potential of CO2 sequestration in saline, oil, gas, shale, basalt, and geothermal reservoirs. After presenting the fundamental properties of various reservoirs, the authors describe each type of reservoir and explain basic parameters, benchmark cases, experimental data, optimization strategies for CO2 sequestration, prospects, and outlook. Rounding out the text with a glossary and consideration of future developments, this book delivers the necessary tools for engineers to better understand carbon sequestration and advance the energy transition.

  • Introduces the physical characteristics of saline, oil, gas, shale, basalt, and geothermal reservoirs
  • Describes the physics and chemistry of CO2 sequestration in different types of reservoirs and their modeling
  • Applies numerical simulation and optimization methodology to various reservoirs with real-world examples
  • Reviews machine learning applications to carbon capture and sequestration
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Specificații

ISBN-13: 9780443153310
ISBN-10: 0443153310
Pagini: 486
Dimensiuni: 191 x 235 mm
Greutate: 1 kg
Editura: ELSEVIER SCIENCE

Cuprins

Preface
Acknowledgments
Chapter 1 Carbon capture, utilization and storage: technology development and applications, policy considerations and techno-economic analysis

Chapter 2 Basic properties of CO2, ground water and geological storage sites
Chapter 3 Numerical methods and codes used in CCUS simulation and optimization
Chapter 4 Geological sequestration of CO2 in deep saline aquifers
Chapter 5 CO2 sequestration in basaltic reservoir
Chapter 6 CO2 Enhanced Oil Recovery(CO2-EOR)
Chapter 7 CO2 Enhanced Gas Recovery(CO2-EGR)
Chapter 8 CO2 Enhanced Geothermal System Recovery(CO2-EGS)
Chapter 9 CO2 Enhanced Shale Gas Recovery(CO2-ESGR)
Chapter 10 CO2 Enhanced Water Recovery(CO2-EWR)
Chapter 11 Application of machine learning in CCUS