High-Temperature Superconducting Devices for Energy Applications
High-Temperature Superconducting Devices for Energy Applications
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- More about High-Temperature Superconducting Devices for Energy Applications
This book discusses the development of high-temperature superconducting devices and technologies for energy applications, including clean energy production, cooling technologies, and grid stabilization. It aims to meet the needs of industry professionals, researchers, and doctoral students studying energy technologies.
Format: Hardback
Length: 219 pages
Publication date: 06 October 2020
Publisher: Taylor & Francis Ltd
This comprehensive book delves into the realm of high-temperature superconducting (HTS) devices, presenting groundbreaking concepts in their development. It explores the diverse technologies involved in producing efficient and economically feasible energy technologies across the globe.
High-Temperature Superconducting Devices for Energy Application takes readers on a journey into the world of clean energy production and allied cooling technologies, where high-temperature superconductors play a pivotal role. In addition to their application in superconducting magnets, the book also delves into the compatibility of other materials used in constructing various devices at cryogenic temperatures. It provides a comprehensive summary of superconducting fault current limiters (SFCL) and their role in grid stabilization.
The primary objective of this book is to address the pressing need to minimize losses incurred during efficient power transmission. It serves as a valuable resource for industry professionals, researchers, and doctoral students specializing in energy technologies.
Key Features:
Comprehensive Coverage: The book offers a comprehensive exploration of the history, principles, and applications of high-temperature superconductors. It covers cryogenic cooling technologies tailored for various superconducting devices, providing detailed design insights.
Superconducting Generators: A detailed analysis is presented on the design of superconducting generators, highlighting their advantages and challenges. It discusses the importance of superconducting magnetic energy storage (SMES) devices in the power grid and their role in enhancing grid stability.
Theoretical Computations: The book incorporates theoretical computations to enhance the understanding of superconducting phenomena and their practical implications. It provides valuable insights into the behavior of superconducting materials and their performance in energy applications.
Target Audience:
Industry Professionals: This book is designed to cater to professionals working in the energy sector, including engineers, scientists, project managers, and policymakers. It offers valuable insights into the latest developments in HTS devices and their potential applications in power generation, transmission, and storage.
Researchers: Academics and researchers interested in the field of energy technologies will find this book an essential resource. It provides a comprehensive overview of HTS devices, enabling them to stay updated with the latest research and advancements in the field.
Doctoral Students: This book is particularly valuable for doctoral students pursuing research in energy technologies, electrical engineering, materials science, or related disciplines. It offers a deep understanding of HTS devices and their applications, equipping them with the necessary knowledge and skills to contribute to the advancement of clean energy solutions.
In conclusion, High-Temperature Superconducting Devices for Energy Application is a groundbreaking resource that empowers industry professionals, researchers, and doctoral students to explore the realm of high-temperature superconducting devices. By presenting novel concepts, discussing cutting-edge technologies, and offering comprehensive insights, this book plays a vital role in shaping the future of clean energy production and allied cooling technologies.
Weight: 492g
Dimension: 148 x 223 x 30 (mm)
ISBN-13: 9780367492502
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