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Time Lapse Approach to Monitoring Oil, Gas, and CO2 Storage by Seismic Methods

Autor Junzo Kasahara, Yoko Hasada
en Limba Engleză Paperback – 13 oct 2016
Time Lapse Approach to Monitoring Oil, Gas, and CO2 Storage by Seismic Methods delivers a new technology to geoscientists, well logging experts, and reservoir engineers, giving them a new basis on which to influence decisions on oil and gas reservoir management.
Named ACROSS (Accurately Controlled and Routinely Operated Signal System), this new evaluation method is presented to address more complex reservoirs, such as shale and heavy oil. The book also discusses prolonged production methods for enhanced oil recovery. The monitoring of storage zones for carbon capture are also included, all helping the petroleum and reservoir engineer to fully extend the life of a field and locate untapped pockets of additional oil and gas resources. Rounded out with case studies from locations such as Japan, Saudi Arabia, and Canada, this book will help readers, scientists, and engineers alike to better manage the life of their oil and gas resources and reservoirs.


  • Benefits both geoscientists and reservoir engineers to optimize complex reservoirs such as shale and heavy oil
  • Explains a more accurate and cost efficient reservoir monitoring technology called ACROSS (Accurately Controlled and Routinely Operated Signal System)
  • Illustrates real-world application through multiple case studies from around the world
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Specificații

ISBN-13: 9780128035887
ISBN-10: 0128035889
Pagini: 216
Dimensiuni: 152 x 229 x 14 mm
Greutate: 0.39 kg
Editura: ELSEVIER SCIENCE

Cuprins

Chapter 1. What is Time Lapse?
Chapter 2. Various Time-Lapse Methods
Chapter 3. Active Seismic Approach by Accurately Controlled and Routinely Operated Signal System
Chapter 4. Imaging of Temporal Changes by Backpropagation
Chapter 5. Passive Seismic Approach
Chapter 6. Previous Time-Lapse Studies Other Than Accurately Controlled and Routinely Operated Signal System Method
Chapter 7. Case Studies Based on Accurately Controlled and Routinely Operated Signal System Methodology
Chapter 8. Near-Surface Effects
Chapter 9. Repeatability
Chapter 10. Rock Physics
Conclusions