Modeling of Resistivity and Acoustic Borehole Logging Measurements Using Finite Element Methods
Autor David Pardo, Pawel J. Matuszyk, Vladimir Puzyrev, Carlos Torres-Verdin, Myung Jin Nam, Victor M. Caloen Limba Engleză Paperback – 26 mai 2021
Simulation results obtained using FE methods are superior. FE methods employ a mathematical terminology based on FE spaces that facilitate the design of sophisticated formulations and implementations according to the specifics of each problem. This mathematical FE framework provides a highly accurate, robust, and flexible unified environment for the solution of multi-physics problems. Thus, readers will benefit from this resource by learning how to make a variety of logging simulations using a unified FE framework.
- Provides a complete and unified finite element approach to perform borehole sonic and electromagnetic simulations
- Includes the latest research in mathematical and implementation content on Finite Element simulations of borehole logging measurements
- Features a variety of unique simulations and numerical examples that allow the reader to easily learn the main features and limitations that appear when simulating borehole resistivity measurements
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Specificații
ISBN-13: 9780128214541
ISBN-10: 0128214546
Pagini: 312
Ilustrații: 160 illustrations (70 in full color)
Dimensiuni: 191 x 235 x 19 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128214546
Pagini: 312
Ilustrații: 160 illustrations (70 in full color)
Dimensiuni: 191 x 235 x 19 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
Part I: Electromagnetics2. Maxwell’s Equations and Variational Formulations3. Modeling of Resistivity Geophysical Measurements
Part II: Acoustics4. Linear Acoustics in Fluids and Solids and Variational Formulations5. Numerical Modeling of Borehole Sonic Measurements
Part III: Advanced Modeling Topics6. Attenuation Model in Anelastic Materials7. Absorbing Boundary Conditions8. Linear Solvers9. Parallel Implementation10. Inverse Problems
Part I: Electromagnetics2. Maxwell’s Equations and Variational Formulations3. Modeling of Resistivity Geophysical Measurements
Part II: Acoustics4. Linear Acoustics in Fluids and Solids and Variational Formulations5. Numerical Modeling of Borehole Sonic Measurements
Part III: Advanced Modeling Topics6. Attenuation Model in Anelastic Materials7. Absorbing Boundary Conditions8. Linear Solvers9. Parallel Implementation10. Inverse Problems