ISBN13: | 9781032599892 |
ISBN10: | 1032599898 |
Kötéstípus: | Keménykötés |
Terjedelem: | 264 oldal |
Méret: | 234x156 mm |
Nyelv: | angol |
Illusztrációk: | 53 Illustrations, black & white; 50 Halftones, black & white; 3 Line drawings, black & white; 18 Tables, black & white |
700 |
Nanotechnology in Enhanced Oil Recovery
GBP 135.00
Kattintson ide a feliratkozáshoz
The book presents an in-depth analysis of the various nanotechnologies that have been developed and their potential application in enhanced oil recovery (EOR) backed by case studies.
The book presents an in-depth analysis of the various nanotechnologies that have been developed and their potential application in enhanced oil recovery (EOR). It begins with an introduction to EOR and the current state of the oil and gas industry followed by discussion of various nanoparticles used in EOR, including metal and metal oxide nanoparticles, carbon-based nanoparticles, and composite nanoparticles. It also explains the various mechanisms by which nanoparticles can enhance oil recovery, and challenges and limitations of using nanotechnology in EOR.
Features:
Provides comprehensive analysis of how nanoparticles affect enhanced Oil Recovery (EOR), practical application, and simulation.
Explores stepwise information about the utility of nanotechnology in EOR
Includes dedicated case study chapters to get in-depth idea of EOR by using nanotechnology
Illustrates various essential parameters affecting the EOR Discusses challenges of nanotechnology based EOR
This book is aimed at graduate students, researchers, and professionals in Petroleum and Chemical Engineering, and Nanotechnology.
0. Prelims. 1. Overview of Enhanced Oil Recovery (EOR). 2. Fundamentals of Nanotechnology for EOR. 3. Wettability Alteration and Interfacial Tension Reduction in EOR. 4. Factors Affecting Nanofluids by Nanotechnology for Enhanced Oil Recovery. 5. Nanoparticle-Assisted Foam for Enhanced Oil Recovery. 6. Functional groups and functionalized nanoparticles in EOR techniques. 7. Effects of Silica Nanoparticles coupled with Low Salinity Water on Oil Recovery in a part of Upper Assam Basin, India. 8. Case Studies of EOR by using nanoparticles. 9. Synthesis Of Iron Oxide Nanoparticles for Enhanced Oil Recovery. 10. CFD of Fluid Flow for EOR using Nanoparticles. 11. Simulation of Nanoparticle-Assisted Enhanced Oil Recovery: A Coupled Multiphase Fluid Flow and Nanoparticle Transport Model. 12. Optimisation of Parameters for Enhanced Oil Recovery Using Nanotechnology. 13. Nanotechnology in Enhanced Oil Recovery: Challenges and Future Directions.