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    Advances in Thermal Energy Storage Systems

    Methods and Applications

    AvLuisa F. Cabeza

    Inbunden, Engelska, 2027

    Del i serien Woodhead Publishing Series in Energy

    3 371 kr

    Kommande

    Beskrivning

    Advances in Thermal Energy Storage Systems: Methods and Applications, Third Edition covers thermal energy storage systems, (TES) including all major advances and developments since the previous edition. It provides readers with comprehensive information related to TES, along with a variety of applications across the energy/power and construction sectors, including the transport industry. After an introduction to TES systems, editor Prof. Dr. Luisa F. Cabeza and her team of expert authors consider the source, design, and operation of the use of water, molten salts, concrete, aquifers, boreholes, and a variety of phase change materials for TES systems before analyzing thermochemical energy storage.

    This edition benefits from several new chapters that cover the most advanced technologies, including TES using solid particles or packed bed tanks, cryogenic latent heat storage and solid-solid PCMs, advanced control systems, and sector coupling and flexibility due to the integration of TES. It will benefit researchers and academics of energy systems and thermal energy storage, construction engineering academics, engineers and practitioners in the energy and power industry, architects of plants and storage systems, and R&D managers.

    • Reviews heat and cold storage technologies, including the use of water, molten salts, concrete, and boreholes
    • Describes latent heat storage systems and thermochemical heat storage
    • Includes information on the monitoring and control of thermal energy storage systems and considers their applications in residential buildings, power, and other areas

    Produktinformation

    • Utgivningsdatum:2027-03-01
    • Mått:152 x 229 x undefined mm
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Woodhead Publishing Series in Energy
    • Antal sidor:850
    • Upplaga:3
    • Förlag:Elsevier Science
    • ISBN:9780443415760

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik
    • Energiteknik inom Naturvetenskap och teknik

    Mer om författaren

    Prof. Dr. Luisa F. Cabeza is a full professor on Thermal Engineering at the University of Lleida, Spain. She holds a degree in Industrial Engineering and in Chemical Engineering, as well as a MBA and a PhD in Industrial Engineering (University Ramon Llull, Barcelona, Spain). Prof. Cabeza’s research interests include thermal energy storage in all its aspects, from the different technologies (sensible, latent and sorption&chemical reactions) to different applications. Further research interests include social aspects (social acceptance, social evaluation, etc.). She is active in different national and international networks on the topic and she holds numerous awards. Prof. Cabeza has co-authored more than 250 journal papers and book chapters in the area of thermal energy storage.

    Innehållsförteckning

    • 1. Introduction to thermal energy storage systems2. Advances in the use of water for heat storage3. Advances in molten salt storage systems using other liquid sensible storage media for heat storage4. Using concrete and other solid storage media in thermal energy storage systems5. The use of aquifers as thermal energy storage systems6. The use of borehole thermal energy storage systems7. Analysis, modeling, and simulation of underground thermal energy storage systems8. Use of solid particles as thermal energy storage material9. Packed bed thermal energy storage systems10. Using ice and snow in thermal energy storage systems11. Cryogenic thermal energy storage systems12. Solid-liquid phase change materials for thermal energy storage13. Solid-solid phase change materials for thermal energy storage14. Microencapsulation of phase change materials for thermal energy storage systems15. Design of latent heat energy storage systems using phase change materials16. Evaluation of the state of charge of latent thermal energy storage tanks17. Modeling of heat transfer in phase change materials for thermal energy storage systems18. Heat transfer enhancement in thermal energy storage tanks19. Integrating phase change materials in thermal energy storage systems for buildings20. Sorption systems for thermal energy storage21. Modeling of sorption systems for thermal energy storage22. Using thermochemical reactions in thermal energy storage systems23. Modeling thermochemical reactions in thermal energy storage systems24. Monitoring and control of thermal energy storage systems25. Advanced control of thermal energy storage systems using artificial intelligence26. Thermal energy storage for space heating and domestic hot water in individual residential buildings27. Thermal energy storage systems for cooling in residential buildings28. Thermal energy storage systems for district heating and cooling29. Waste heat recovery using thermal energy storage30. Thermal energy storage systems for cogeneration and trigeneration systems31. Thermal storage for concentrating solar power plants32. Thermal energy storage systems for greenhouse technology33. Thermal energy storage in the transport sector34. Thermal energy storage for temperature management of electronics35. Carnot batteries with thermal energy storage integration36. Environmental aspects in thermal energy storage systems37. Economics aspects in thermal energy storage systems38. Social aspects in thermal energy storage and co-benefits of the technology