Defrosting for Air Source Heat Pump -  Shiming Deng,  Mengjie Song

Defrosting for Air Source Heat Pump (eBook)

Research, Analysis and Methods
eBook Download: EPUB
2019 | 1. Auflage
384 Seiten
Elsevier Science (Verlag)
978-0-08-102518-5 (ISBN)
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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


Dr. Song received his bachelor degree from Hunan University, masters degree from Harbin Institute of Technology, and Ph.D. from the Hong Kong Polytechnic University, respectively. Before he started his doctoral study, he worked as a HVAC&R designing engineer at the Central-South Architectural Design Institute Co., LTD, China. After graduating from Hong Kong, he had two short experience at the Guangdong University of Technology, China and the Nanyang Technological University, Singapore. He now works as a JSPS Research Fellow at the Department of Human and Engineered Environmental Studies, Graduate School of Frontier Sciences, The University of Tokyo, Japan. His research interests include frosting and defrosting for ASHP units, indoor thermal comfort, thermal characteristic stability of PCMs, and data centre cooling technology. On the topic of frosting and defrosting, he had nearly 10 years' research experience, and proposed series of definitions for basic physical phenomenon. He has published more than 20 SCI papers as first author and applied more than 10 patents in the heat transfer field.
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
Erscheint lt. Verlag 30.5.2019
Sprache englisch
Themenwelt Naturwissenschaften Physik / Astronomie Thermodynamik
Technik Bauwesen
Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
ISBN-10 0-08-102518-1 / 0081025181
ISBN-13 978-0-08-102518-5 / 9780081025185
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