Cargando…

Experimental and numerical analysis of interfilament resistances in NbTi strands

Superconducting strands are composite wires made of fine superconducting filaments embedded in a metallic matrix. The transverse resistivity among superconducting filaments affects the coupling losses during electromagnetic transients and the electro-thermal behavior of the wire in case of a quench....

Descripción completa

Detalles Bibliográficos
Autores principales: Breschi, M, Massimini, M, Ribani, P L, Spina, T, Corato, V
Lenguaje:eng
Publicado: 2014
Materias:
XX
Acceso en línea:https://dx.doi.org/10.1088/0953-2048/27/5/055021
http://cds.cern.ch/record/2114738
_version_ 1780949152390184960
author Breschi, M
Massimini, M
Ribani, P L
Spina, T
Corato, V
author_facet Breschi, M
Massimini, M
Ribani, P L
Spina, T
Corato, V
author_sort Breschi, M
collection CERN
description Superconducting strands are composite wires made of fine superconducting filaments embedded in a metallic matrix. The transverse resistivity among superconducting filaments affects the coupling losses during electromagnetic transients and the electro-thermal behavior of the wire in case of a quench. A direct measurement of the transverse interfilament resistance as a function of temperature in NbTi multi-filamentary wires was performed at the ENEA Frascati Superconductivity Division, Italy by means of a four-probe method. The complexity of these measurements is remarkable, due to the current distribution phenomena that occur among superconducting filaments during these tests. A two-dimensional finite element method model of the wire cross section and a three-dimensional electrical circuit model of the wire sample developed at the University of Bologna are applied here to derive qualitative and quantitative information about the transverse electrical resistance matrix. The experiment is aimed at verifying the qualitative behaviors and trends predicted by the numerical calculations, especially concerning the current redistribution length and consequent length effects of the sample under test. A fine tuning of the model parameters at the filament level allowed us to reproduce the experimental results and get quantitative information about the current distribution phenomena between filaments.
id cern-2114738
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-21147382019-09-30T06:29:59Zdoi:10.1088/0953-2048/27/5/055021http://cds.cern.ch/record/2114738engBreschi, MMassimini, MRibani, P LSpina, TCorato, VExperimental and numerical analysis of interfilament resistances in NbTi strandsXXSuperconducting strands are composite wires made of fine superconducting filaments embedded in a metallic matrix. The transverse resistivity among superconducting filaments affects the coupling losses during electromagnetic transients and the electro-thermal behavior of the wire in case of a quench. A direct measurement of the transverse interfilament resistance as a function of temperature in NbTi multi-filamentary wires was performed at the ENEA Frascati Superconductivity Division, Italy by means of a four-probe method. The complexity of these measurements is remarkable, due to the current distribution phenomena that occur among superconducting filaments during these tests. A two-dimensional finite element method model of the wire cross section and a three-dimensional electrical circuit model of the wire sample developed at the University of Bologna are applied here to derive qualitative and quantitative information about the transverse electrical resistance matrix. The experiment is aimed at verifying the qualitative behaviors and trends predicted by the numerical calculations, especially concerning the current redistribution length and consequent length effects of the sample under test. A fine tuning of the model parameters at the filament level allowed us to reproduce the experimental results and get quantitative information about the current distribution phenomena between filaments.oai:cds.cern.ch:21147382014
spellingShingle XX
Breschi, M
Massimini, M
Ribani, P L
Spina, T
Corato, V
Experimental and numerical analysis of interfilament resistances in NbTi strands
title Experimental and numerical analysis of interfilament resistances in NbTi strands
title_full Experimental and numerical analysis of interfilament resistances in NbTi strands
title_fullStr Experimental and numerical analysis of interfilament resistances in NbTi strands
title_full_unstemmed Experimental and numerical analysis of interfilament resistances in NbTi strands
title_short Experimental and numerical analysis of interfilament resistances in NbTi strands
title_sort experimental and numerical analysis of interfilament resistances in nbti strands
topic XX
url https://dx.doi.org/10.1088/0953-2048/27/5/055021
http://cds.cern.ch/record/2114738
work_keys_str_mv AT breschim experimentalandnumericalanalysisofinterfilamentresistancesinnbtistrands
AT massiminim experimentalandnumericalanalysisofinterfilamentresistancesinnbtistrands
AT ribanipl experimentalandnumericalanalysisofinterfilamentresistancesinnbtistrands
AT spinat experimentalandnumericalanalysisofinterfilamentresistancesinnbtistrands
AT coratov experimentalandnumericalanalysisofinterfilamentresistancesinnbtistrands