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Defrosting for Air Source Heat Pump: Research, Analysis and Methods (Woodhead Publishing Series in Energy)

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en Limba Engleză Paperback – 18 May 2019
Defrosting for Air Source Heat Pumps: Research, Analysis and Methods presents a detailed analysis of the methods, processes and problems relating to defrosting, a necessary requirement to maintain the performance of ASHP units. Readers will gain a deeper understanding of control strategies and system design optimization methods that improve the performance and reliability of units. The book discusses the most recent experimental and numerical studies of reverse cycle defrosting and the most widely used defrosting method for ASHP. Techno-economic considerations are also presented, as is the outlook for the future.
This book is a valuable resource for research students and academics of thermal energy and mechanical engineering, especially those focusing on defrosting for ASHP, heating, ventilation and energy efficiency, as well as engineers and professionals engaged in the development and management of heat pump machinery.

  • Includes MATLAB codes that allow the reader to implement the knowledge they have acquired in their own simulations and projects
  • Discusses experimental and numerical studies to provide a well-rounded analysis of technologies, methods and available systems
  • Presents techno-economic considerations and a look to the future
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ISBN-13: 9780081025178
ISBN-10: 0081025173
Pagini: 384
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.51 kg
Seria Woodhead Publishing Series in Energy

Public țintă

Research students, engineers, academics and researchers of mechanical and thermal energy engineering, especially focusing on defrosting for ASHP, heating, ventilation, air conditioning, energy recovery, energy efficient buildings. The engineers will likely be engaged in heat pump machinery and energy efficiency.


1. Introduction 2. Previous Related Work - A Review 3. Uneven Defrosting on the Outdoor Coil in an ASHP 4. Modelling Study on Uneven Defrosting 5. Investigation of Effect on Uneven Defrosting Performance 6. Frosting Evenness Coefficient 7. The Influence of Refrigerant Distribution on Defrosting 8. Energy Transfer During Defrosting 9. Defrosting Control Strategy 10. Technoeconomic Performance 11. Conclusions and Future Work