Viktor I. Terekhov,Aleksey Yu. Dyachenko,Yaroslav J. Smulsky,Tatyana V. Bogatko,Nadezhda I. Yarygina
Heat Transfer in Subsonic Separated Flows
Heat Transfer in Subsonic Separated Flows
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- More about Heat Transfer in Subsonic Separated Flows
The book discusses the research of separated laminar flows, which are of practical interest for developing microchannel technologies. It also considers the challenges of finding the optimal location for cavities and fins on heat exchange surfaces.
Format: Hardback
Length: 217 pages
Publication date: 06 February 2022
Publisher: Springer Nature Switzerland AG
This comprehensive book presents the remarkable outcomes of scientific research conducted over the past two decades by the esteemed authors. It delves into various aspects of separated laminar flows, which hold immense practical significance for the development of innovative technologies utilizing microchannel flows. One of the key focuses of the book is the intricate mechanism of flow separation in the presence of significant external turbulence. This phenomenon is of particular interest as it plays a crucial role in shaping the design of efficient heat exchangers in diverse power plants. Additionally, the challenges associated with locating the optimal placement of cavities and fins on heat exchange surfaces are explored, recognizing their critical importance in creating new and improved schemes for heat exchangers.
A wide range of problems related to turbulent flow in tubes with flow separation are considered in this book. These findings will be invaluable in engineering assessments of the thermal-hydraulic efficiency of various heat transfer intensifiers. Furthermore, the book emphasizes the analysis of thermal characteristics of separated flows, exploring the potential for controlling the intensity of heat exchange processes from both the perspective of intensification and suppression.
By presenting a wealth of information and insights, this book serves as a valuable resource for researchers, engineers, and professionals engaged in the field of thermal engineering and heat transfer. It provides a solid foundation for further advancements in this domain and contributes to the ongoing development of innovative technologies that will shape the future of energy efficiency and sustainability.
Weight: 524g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030945565
Edition number: 1st ed. 2022
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