Energy Storage Technologies, State-of-the-arts, Thermodynamic Modeling, and Perspectives

Energy Storage Technologies, State-of-the-arts, Thermodynamic Modeling, and Perspectives

Arabkoohsar, Ahmad

182,00 €(IVA inc.)

Energy Storage Technologies, State-of-the-arts, Thermodynamic Modeling, and Perspectives presents dynamic thermodynamic modeling of current and future energy storage technologies. Giving a detailed understanding of why both heat and electricity energy storage technologies have developed so rapidly, this reference presents the general thermodynamics that apply to main system components, as well as off-design performance maps. Discussed through a consistent framework, each chapter outlines state-of-the-art advances, benefits, challenges and detailed mathematical modeling (both energy and exergy) of each energy storage system. Chapters conclude with case study analysis, giving detailed understanding of system performance in real operational conditions. In addition, users will find discussions on future prospects for emerging technologies and solutions for future storage systems. Features all the major Mechanical and Chemical Energy Storage Systems, including electricity and heat storage Includes step-by-step energy and exergy modeling, including off-design performance modeling Provides future perspectives for technologies, describing how they will contribute to future smart energy systems INDICE: 1. Classification of Mechanical/Chemical Energy Storage Systems 2. Principal Thermodynamics of Energy Storage Systems 3. Sensible Heat Storage 4. Latent Heat Storage 5. Seasonal Heat Storage 6. Compressed Air Energy Storage System 7. Trigeneration Compressed Air Energy Storage 8. Compressed Gas Hydraulic Energy Storage 9. Liquid Air Energy Storage 10. Pumped Hydropower Energy Storage 11. Pumped Heat Electricity Storage 12. High-Temperature Heat and Power Storage 13. Flywheel Energy Storage 14. Gravity Energy Storage 15. Hydrogen Energy Storage 16. Power-to-Biofuel Storage 17. Conclusion

  • ISBN: 978-0-323-90786-6
  • Editorial: Academic Press
  • Encuadernacion: Rústica
  • Páginas: 510
  • Fecha Publicación: 01/04/2023
  • Nº Volúmenes: 1
  • Idioma: Inglés