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Thermal Energy Storage in Porous Media: Design and Applications

Autor Xiaohu Yang, Ming-Jia Li, Jinyue Yan
en Limba Engleză Paperback – noi 2024
Thermal Energy Storage in Porous Media: Design and Applications introduces the new design concepts and operation strategies for the core part of heat and mass transfer in thermal energy storage tanks. With a strong focus on design, operation and optimization, the book presents the latest advances in thermal energy storage. Opening with an introduction to latent heat thermal storage, the book then discusses porous media enhanced thermal storage classifications, methods and characterizations. Subsequent topics include energy charging/discharging system design, numerical simulation models and verification, and an analysis of various melting/solidification laws. Finishing with a detailed presentation of applications and containing case studies and real-world examples throughout, this is an essential read for graduate students, researchers and engineers interested in thermal engineering, energy systems, and renewable energy.


  • Presents the emerging design concept of using porous media, such as metal foam, for heat transfer enhancement
  • Details mechanisms and processes for the transient phenomena of thermal energy storage/release process in porous media
  • Describes comparable analysis and modeling methods for the transient problem, including the volume-averaged method, pore-scale reconstruction approach, and the Lattice Boltzmann method
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Specificații

ISBN-13: 9780443160967
ISBN-10: 0443160961
Pagini: 350
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE

Cuprins

1. An introduction to latent heat thermal storage 2. Porous media enhanced thermal storage 3. Energy charging/discharging system design and experimental results on a composite 4. Numerical simulation model and verification 5. Melting/solidification law of axial-gradient structure in a vertical thermal storage tank 6. Melting/solidification law of radial-gradient structure in a vertical thermal storage tank 7. Melting/solidification law of cross-gradient structure in a vertical thermal storage tank 8. Melting/solidification law of radial-gradient structure in a horizontal thermal storage tank 9. Applications of metal foam enhanced thermal energy storage for district heating