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Second-Generation High-Temperature Superconducting Coils and Their Applications for Energy Storage: Springer Theses

Autor Weijia Yuan
en Limba Engleză Hardback – 9 iul 2011
Second-Generation High-Temperature Superconducting Coils and Their Applications for Energy Storage addresses the practical electric power applications of high-temperature superconductors. It validates the concept of a prototype energy storage system using newly available 2G HTS conductors by investigating the process of building a complete system from the initial design to the final experiment. It begins with a clear introduction of the related background and then presents a comprehensive design of a superconducting energy storage system that can store maximum energy using a limited length of superconductors. The author has created a modeling environment for analysis of the system and also presents experimental results that are highly consistent with his theoretical calculations.
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Specificații

ISBN-13: 9780857297419
ISBN-10: 0857297414
Pagini: 145
Ilustrații: XV, 145 p. 169 illus., 62 illus. in color.
Dimensiuni: 155 x 235 x 23 mm
Greutate: 0.59 kg
Ediția:2011
Editura: SPRINGER LONDON
Colecția Springer
Seria Springer Theses

Locul publicării:London, United Kingdom

Public țintă

Research

Cuprins

1. Introduction.- 2. Background of Superconductors.- 3. Development of SMES Systems.- 4. Coil Design.- 5. Modelling of Superconducting Pancake Coil.- 6. Coil Tests and Applications for SMES.- 7. Conclusions.

Textul de pe ultima copertă

Second-Generation High-Temperature Superconducting Coils and Their Applications for Energy Storage addresses the practical electric power applications of high-temperature superconductors. It validates the concept of a prototype energy storage system using newly available 2G HTS conductors by investigating the process of building a complete system from the initial design to the final experiment. It begins with a clear introduction of the related background and then presents a comprehensive design of a superconducting energy storage system that can store maximum energy using a limited length of superconductors. The author has created a modeling environment for analysis of the system and also presents experimental results that are highly consistent with his theoretical calculations.

Caracteristici

Validates the concept of a prototype energy storage system using newly available 2G HTS conductors Presents a comprehensive design of a superconducting energy storage system Presented experimental results that are highly consistent with theoretical calculations