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Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor

This paper describes a new method to determine the equivalent heat transfer coefficients, i.e., radial and azimuthal, in CICC’s with parallel cooling channels. The method is based on the measurement of the steady state temperature response to a step heating. The experiment is modelled by a set of tr...

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Detalles Bibliográficos
Autores principales: Marinucci, C, Bottura, L, Bruzzone, P, Stepanov, B
Lenguaje:eng
Publicado: 2007
Materias:
XX
Acceso en línea:http://cds.cern.ch/record/1064929
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author Marinucci, C
Bottura, L
Bruzzone, P
Stepanov, B
author_facet Marinucci, C
Bottura, L
Bruzzone, P
Stepanov, B
author_sort Marinucci, C
collection CERN
description This paper describes a new method to determine the equivalent heat transfer coefficients, i.e., radial and azimuthal, in CICC’s with parallel cooling channels. The method is based on the measurement of the steady state temperature response to a step heating. The experiment is modelled by a set of transport equations for the temperature distribution that contain explicitly the parametric dependence on the transverse heat transfer coefficients. The equations are solved analytically and the values of the equivalent transverse heat transfer coefficients are obtained as the best fit of the experimental temperature distributions. We show the results obtained with the method by application to a short length sample experiment in the SULTAN test facility using an ITER-type CICC with special instrumentation, and with heaters to generate a variety of heat slugs. The values of heat transfer coefficient are consistent with expected values, based in particular on the theory of dispersion in porous media.
id cern-1064929
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
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spelling cern-10649292019-09-30T06:29:59Zhttp://cds.cern.ch/record/1064929engMarinucci, CBottura, LBruzzone, PStepanov, BAnalysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductorXXThis paper describes a new method to determine the equivalent heat transfer coefficients, i.e., radial and azimuthal, in CICC’s with parallel cooling channels. The method is based on the measurement of the steady state temperature response to a step heating. The experiment is modelled by a set of transport equations for the temperature distribution that contain explicitly the parametric dependence on the transverse heat transfer coefficients. The equations are solved analytically and the values of the equivalent transverse heat transfer coefficients are obtained as the best fit of the experimental temperature distributions. We show the results obtained with the method by application to a short length sample experiment in the SULTAN test facility using an ITER-type CICC with special instrumentation, and with heaters to generate a variety of heat slugs. The values of heat transfer coefficient are consistent with expected values, based in particular on the theory of dispersion in porous media.oai:cds.cern.ch:10649292007
spellingShingle XX
Marinucci, C
Bottura, L
Bruzzone, P
Stepanov, B
Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor
title Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor
title_full Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor
title_fullStr Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor
title_full_unstemmed Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor
title_short Analysis of the transverse heat transfer coefficients in a dual channel ITER-type cable-in-conduit conductor
title_sort analysis of the transverse heat transfer coefficients in a dual channel iter-type cable-in-conduit conductor
topic XX
url http://cds.cern.ch/record/1064929
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AT bottural analysisofthetransverseheattransfercoefficientsinadualchannelitertypecableinconduitconductor
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AT stepanovb analysisofthetransverseheattransfercoefficientsinadualchannelitertypecableinconduitconductor