Numerical Modelling of Superconducting Power Cables with Second Generation High Temperature Superconductors

Numerical Modelling of Superconducting Power Cables with Second Generation High Temperature Superconductors PDF Author: Min Yao
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Numerical Modelling of Superconducting Power Cables with Second Generation High Temperature Superconductors

Numerical Modelling of Superconducting Power Cables with Second Generation High Temperature Superconductors PDF Author: Min Yao
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Numerical Modeling Of Superconducting Applications: Simulation Of Electromagnetics, Thermal Stability, Thermo-hydraulics And Mechanical Effects In Large-scale Superconducting Devices

Numerical Modeling Of Superconducting Applications: Simulation Of Electromagnetics, Thermal Stability, Thermo-hydraulics And Mechanical Effects In Large-scale Superconducting Devices PDF Author: Bertrand Dutoit
Publisher: World Scientific
ISBN: 9811271453
Category : Science
Languages : en
Pages : 329

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Book Description
This book aims to present an introduction to numerical modeling of different aspects of large-scale superconducting applications: electromagnetics, thermal, mechanics and thermo-hydraulics. The importance of computational modeling to advance current superconductor research cannot be overlooked, especially given the enormous benefits provided by superconductors in many human endeavours, including energy generation, medical treatments, and future electrical technologies.Aimed at graduate students, researchers and practitioners in different fields of applied superconductivity, this book consists of four chapters. The chapter on electromagnetics provides a review of the state-of-the-art modeling of electromagnetic phenomena in superconductors, emphasising the theoretical aspects of the different numerical formulations. This is followed by a chapter on thermal effects, dedicated to the simulation of thermal stability and quench in superconducting magnets, with specific examples of magnets used in particle accelerators. Then, the chapter on mechanics provides details of the modeling of forces and stresses in cables composed of second-generation high-temperature superconducting wires. Finally, the chapter on thermo-hydraulics focuses on the fundamental thermal-hydraulic aspects involved in the cooling of superconducting magnets, with special reference to the issues related to the forced-flow cooling.

Study of Second Generation High Temperature Superconductors: Electromagnetic Characteristics and AC Loss Analysis

Study of Second Generation High Temperature Superconductors: Electromagnetic Characteristics and AC Loss Analysis PDF Author: Boyang Shen
Publisher: Springer Nature
ISBN: 303058058X
Category : Technology & Engineering
Languages : en
Pages : 185

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Book Description
This thesis introduces a systematic study on Second Generation (2G) High Temperature Superconductors (HTS), covering a novel design of an advanced medical imaging device using HTS, and an in-depth investigation on the losses of HTS. The text covers the design and simulation of a superconducting Lorentz Force Electrical Impedance Tomography. This is potentially a significant medical device that is more efficient and compact than an MRI, and is capable of detecting early cancer, as well as other pathologies such stroke and internal haemorrhages. It also presents the information regarding the fundamental physics of superconductivity, concentrating on the AC losses in superconducting coils and tapes. Overall, the thesis signifies an important contribution to the investigation of High Temperature Superconductors. This thesis will be beneficial to the development of advanced superconducting applications in healthcare as well as more broadly in electrical and energy systems.

Optimisation of hysteretic losses in high-temperature superconducting wires

Optimisation of hysteretic losses in high-temperature superconducting wires PDF Author: Krueger, Philipp
Publisher: KIT Scientific Publishing
ISBN: 3731501856
Category : Science
Languages : en
Pages : 245

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Book Description
Hysteretic loss optimisations through numerical simulation and subsequent experimental confirmation in transport current and background field measurements: ferromagnetic shielding and topological geometry optimisation is used to reduce energy dissipation in HTS coated conductor geometries. Single tapes and coil geometries are investigated. A 3D model capable of taking into account contact resistances is also presented for the Twisted Stacked Tape Conductor cable.

Numerical Modelling of High Temperature Superconducting Tapes and Cables

Numerical Modelling of High Temperature Superconducting Tapes and Cables PDF Author: Francesco Grilli
Publisher:
ISBN:
Category :
Languages : en
Pages : 109

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Optimisation of Hysteretic Losses in High-temperature Superconducting Wires

Optimisation of Hysteretic Losses in High-temperature Superconducting Wires PDF Author: Philipp Krüger
Publisher:
ISBN: 9781013281655
Category : Business & Economics
Languages : en
Pages : 240

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Book Description
Hysteretic loss optimisations through numerical simulation and subsequent experimental confirmation in transport current and background field measurements: ferromagnetic shielding and topological geometry optimisation is used to reduce energy dissipation in HTS coated conductor geometries. Single tapes and coil geometries are investigated. A 3D model capable of taking into account contact resistances is also presented for the Twisted Stacked Tape Conductor cable. This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.

Electrical Characterizing of Superconducting Power Cable Consisted of Second-generation High-temperature Superconducting Tapes

Electrical Characterizing of Superconducting Power Cable Consisted of Second-generation High-temperature Superconducting Tapes PDF Author: Zhenyu Zhang
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Superconductors in the Power Grid

Superconductors in the Power Grid PDF Author: C. Rey
Publisher: Elsevier
ISBN: 1782420371
Category : Technology & Engineering
Languages : en
Pages : 463

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Book Description
Superconductors offer high throughput with low electric losses and have the potential to transform the electric power grid. Transmission networks incorporating cables of this type could, for example, deliver more power and enable substantial energy savings. Superconductors in the Power Grid: Materials and Applications provides an overview of superconductors and their applications in power grids. Sections address the design and engineering of cable systems and fault current limiters and other emerging applications for superconductors in the power grid, as well as case studies of industrial applications of superconductors in the power grid. Expert editor from highly respected US government-funded research centre Unique focus on superconductors in the power grid Comprehensive coverage

Development of high-temperature superconductor cables for high direct current applications

Development of high-temperature superconductor cables for high direct current applications PDF Author: Preuß, Alan
Publisher: KIT Scientific Publishing
ISBN: 3731510413
Category : Technology & Engineering
Languages : en
Pages : 194

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Book Description
A design process for HTS DC cables was developed for high current applications. Based on the design process, a 35 kA HTS DC cable demonstrator was developed. The superconducting elements of the demonstrator were manufactured and tested individually at 77 K. Afterwards, the demonstrator cable was assembled and tested at 77 K. The assembled demonstrator successfully reached 35 kA at 77 K and self field conditions.

Applications of High Temperature Superconductors to Electric Power Equipment

Applications of High Temperature Superconductors to Electric Power Equipment PDF Author: Swarn S. Kalsi
Publisher: John Wiley & Sons
ISBN: 1118110099
Category : Technology & Engineering
Languages : en
Pages : 228

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Book Description
The only one-stop reference to design, analysis, and manufacturing concepts for power devices utilizing HTS. High temperature superconductors (HTS) have been used for building many devices for electric grids worldwide and for large ship propulsion motors for the U.S. Navy. And yet, there has been no single source discussing theory and design issues relating to power applications of HTS—until now. This book provides design and analysis for various devices and includes examples of devices built over the last decade. Starting with a complete overview of HTS, the subsequent chapters are dedicated to specific devices: cooling and thermal insulation systems; rotating AC and DC machines; transformers; fault current limiters; power cables; and Maglev transport. As applicable, each chapter provides a history of the device, principles, configuration, design and design challenges, prototypes, and manufacturing issues, with each ending with a summary of the material covered. The design analysis and design examples provide critical insight for readers to successfully design their own devices. Original equipment manufacturer (OEM) designers, industry and utilities users, universities and defense services research groups, and senior/postgraduate engineering students and instructors will rely on this resource. "HTS technology reduces electric losses and increases the efficiency of power equipment. This book by Swarn Kalsi, a leading expert on the HTS subject, provides a survey of the HTS technology and the design rules, performance analyses, and manufacturing concepts for power application-related devices. It compares conventional and HTS technology approaches for device design and provides significant examples of devices utilizing the HTS technology today. The book is useful for a broad spectrum of professionals worldwide: students, teaching staff, and OEM designers as well as users in industry and electric utilities." —Professor Dr. Rolf Hellinger, Research and Technologies Corporate Technology, Siemens AG