Progress in porous media research /
Clasificación: | Libro Electrónico |
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Otros Autores: | , |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
New York :
Nova Science Publishers,
©2009.
|
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Progress in porous media research
- progress in porous media research
- contents
- preface
- research and review studies
- advances in synthesis and applications of ordered porous materials
- abstract
- 1. introduction
- 2. zeolites
- 3. mesoporous silica materials
- 4. ordered mesoporous carbon
- 5. non-siliceous mesoporous materials
- 6. mesoporous zeolite
- 7. layered clay materials
- conclusion and future prospective
- references
- heat and mass transfer in porous media under phase transition conditions: freezing of soils
- ABSTRACT 1. INTRODUCTION
- 2. THE PRINCIPAL TRANSFER MECHANISMS
- 3. EQUATIONS OF THE HEAT AND MASS TRANSFER PROCESS IN MULTIPHASE POROUS MEDIA
- 4. FREEZING OF SOIL: THREE-ZONE MODEL
- CONCLUSION
- REFERENCES
- APPENDIX. THE SYSTEM OF EQUATIONS (4.44)�(4.46)
- TRANSIENT INFINITE ELEMENT THEORY FOR SIMULATING HEAT TRANSFER AND MASS TRANSPORT PROBLEMS IN FLUID-SATURATED POROUS MEDIA OF INFINITE DOMAINS
- ABSTRACT
- 1. INTRODUCTION
- 2. fundamental theory of transient infinite elements for simulating mass transport problems in fluid-saturated porous media of infinite domains3. fundamental theory of transient infinite elements for simulating heat transfer problems in fluid-saturated porous media of infinite domains
- 4. verification of the proposed transient infinite elements for simulating mass transport and heat transfer problems in fluid-saturated porous media of infinite domains
- 5. conclusions and discussions
- acknowledgments
- references
- Numerical simulation of fluid flow and heat transfer in porous mediaabstract
- nomenclature
- 1.1. introduction
- 1.2. lattice boltzmann simulation of fluid flows in porous media
- 1.3. simulation of heat conduction in porous media using the finite volume method (fvm)
- 1.4. lattice boltzmann simulation of flow-solid coupling heat transfer in porous media
- conclusions
- acknowledgments
- references
- modeling of transport phenomena in porous media using network models
- abstract
- introduction
- PART A � REVISION OF NETWORK MODELS PROPOSED IN LITERATURE NETWORK MODELS � TYPES AND CHARACTERIZATION
- FLUID FLOW MODELING
- MASS TRANSPORT MODELING
- PART B
- NETWORK MODEL PROPOSED
- NETWORK MODEL
- HYDRODYNAMIC MODEL
- MASS TRANSPORT
- CONCLUSION
- REFERENCES
- ADVANCES IN INTEGRATED MODELING OF MASS TRANSPORT AND GEO-MECHANICS IN COAL SEAMS FOR CO2 GEO-SEQUESTRATION
- ABSTRACT
- NOTATION
- INTRODUCTION
- EXPERIMENTAL EQUIPMENT AND PROCEDURE FOR CO2 GEO-SEQUESTRATION