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Quench Characteristics of an NbTi CICC With Non-Uniform Current Distribution

Author
BANSAL, Gourab1 2 ; SEO, Kazutaka3 ; YANAGI, Nagato3 ; HEMMI, Tsutomu4 ; TAKAHATA, Kazuya3 ; MITO, Toshiyuki3 ; SARKAR, Biswanath2 ; SAXENA, Yogesh C2
[1] Graduate University for Advanced Studies, National Institute for Fusion Science, Toki, Gifu 509-5292, Japan
[2] Institute for Plasma Research, Bhat, Gandhinagar 382428, India
[3] National Institute for Fusion Science, Toki, Gifu 509-5292, Japan
[4] Japan Atomic Energy Agency, Fusion Research and Development, Ibaraki Prefecture (Tokaimura), Japan
Conference title
The Twentieth International Conference on Magnet Technology, Philadelphia, PA, USA, August 27-31, 2007
Conference name
International Conference on Magnet Technology (20 ; Philadelphia, PA 2007-08-27)
Author (monograph)
IEEE Council on Applied Superconductivity, United States (Organiser of meeting)
Source

IEEE transactions on applied superconductivity. 2008, Vol 18, Num 2, pp 1245-1248, 4 p ; ref : 20 ref

ISSN
1051-8223
Scientific domain
Electronics; Electrical engineering
Publisher
Institute of Electrical and Electronics Engineers, New York, NY
Publication country
United States
Document type
Conference Paper
Language
English
Author keyword
Cable-in-conduit conductor non-uniform current distribution quench stability
Keyword (fr)
Circuit multiétage Codage Conducteur électrique Contrainte thermique Contrainte électrique Couche mince Câble sous tube Distribution courant Distribution non uniforme Elément chauffant Energie minimale Etude comparative Etude expérimentale Fiabilité Loi uniforme Marge stabilité Méthode numérique Méthode section divisée Méthode élément fini Résistance contact Simulation numérique Toron Instabilité thermique de la polarisation négative
Keyword (en)
Multistage circuit Coding Electrical conductor Thermal stress Electric stress Thin film Pipe cable Current distribution Non uniform distribution Heating element Minimum energy Comparative study Experimental study Reliability Uniform distribution Stability margin Numerical method Multistage method Finite element method Contact resistance Numerical simulation Strand Negative bias temperature instability
Keyword (es)
Circuito multipiso Codificación Conductor eléctrico Tensión térmica Tensión eléctrica Capa fina Cable bajo tubo Distribución corriente Distribución no uniforme Elemento calentador Energía mínima Estudio comparativo Estudio experimental Fiabilidad Ley uniforme Margen estabilidad Método numérico Método elemento finito Resistencia contacto Simulación numérica Bocel
Classification
Pascal
001 Exact sciences and technology / 001D Applied sciences / 001D05 Electrical engineering. Electrical power engineering / 001D05G Various equipment and components / 001D05G01 Electromagnets

Pascal
001 Exact sciences and technology / 001D Applied sciences / 001D05 Electrical engineering. Electrical power engineering / 001D05G Various equipment and components / 001D05G04 Electric connection. Cables. Wiring

Pascal
001 Exact sciences and technology / 001D Applied sciences / 001D05 Electrical engineering. Electrical power engineering / 001D05G Various equipment and components / 001D05G06 Miscellaneous

Discipline
Electrical engineering. Electroenergetics
Origin
Inist-CNRS
Database
PASCAL
INIST identifier
20483896

Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS

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