Seismic Fracture Characterization
Concepts and Practical Applications
- 1 Edición - 6 de diciembre de 2013
- Última edición
- Autor: Enru Liu
- Idioma: Inglés
During the last three decades, seismic anisotropy has evolved from a purely academic research topic into applications in the mainstream of applied geophysics. Today, nobody doubts… Leer más
Descripción
Descripción
Puntos claves
Puntos claves
- Includes cast studies demonstrating the applicability, workflow and limitations of this technology
- Contains physical laboratory 3D experiments where fracture distributions are known, a Middle East fractured carbonate reservoir and a fractured tight gas reservoir.
- Builds discrete fracture network models incorporating all data. These models should not only be geologically consistent but also geophysically and geomechanically consistent, so that the models can be used to forecast the behaviour and performance of fractured reservoirs.
Índice
Índice
Acknowledgements 3
General disclaimer 5
Preface 11
1. Introduction 11
2. Fundamentals of seismic anisotropy 29
3. Equivalent medium modelling of fractured rock 59
4. Estimation of fracture parameters from azimuth analysis of P-wave data 95
5. Multicomponent seismology and its application to fracture characterization 119
6. Fracture detection using 3D seismic data: physical laboratory studies 155
7. Mitigation of overburden effects in azimuthal AVO analysis of a Middle East carbonate field 169
8. Integrated study of fracture characterization of a tight gas reservoir using 3C-3D seismic data at Piceance Basin, Colorado, USA 191
9. Summary and road ahead 207
References 221
Appendix A. The two-index notation of elastic tensors 263
Appendix B. Wave propagation in anisotropic media 265
Appendix C. Effective elastic constants of cracked media - Hudson’s model 269
Appendix D. Plane wave reflection and transmission coefficients in anisotropic media - Schoenberg and Protazio algorithm 271
Index 275
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 6 de diciembre de 2013
- Idioma: Inglés