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Finite Element Thermal Study of the Linac4 Plasma Generatora

The temperature distribution and heat flow at equilibrium of the plasma generator of the RF-powered non-cesiated Linac4 H- ion source have been studied with a finite element model. It is shown that the equilibrium temperatures obtained in the Linac4 nominal operation mode (100 kW RF power, 2 Hz, 0.4...

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Autores principales: Faircloth, D, Kronberger, M, Kuchler, D, Lettry, L, Scrivens, R
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1240841
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author Faircloth, D
Kronberger, M
Kuchler, D
Lettry, L
Scrivens, R
author_facet Faircloth, D
Kronberger, M
Kuchler, D
Lettry, L
Scrivens, R
author_sort Faircloth, D
collection CERN
description The temperature distribution and heat flow at equilibrium of the plasma generator of the RF-powered non-cesiated Linac4 H- ion source have been studied with a finite element model. It is shown that the equilibrium temperatures obtained in the Linac4 nominal operation mode (100 kW RF power, 2 Hz, 0.4 ms pulse duration) are within material specifications except for the magnet cage, where a redesign may be necessary. To assess the upgrade of the Linac4 source for operation in the high-power operation mode of SPL, an extrapolation of the heat load towards 100 kW RF power, 50 Hz repetition rate and 0.4 ms pulse duration has been performed. The results indicate that a significant improvement of the source cooling is required to allow for operation in HP-SPL.
id cern-1240841
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-12408412019-09-30T06:29:59Zhttp://cds.cern.ch/record/1240841engFaircloth, DKronberger, MKuchler, DLettry, LScrivens, RFinite Element Thermal Study of the Linac4 Plasma GeneratoraAccelerators and Storage RingsThe temperature distribution and heat flow at equilibrium of the plasma generator of the RF-powered non-cesiated Linac4 H- ion source have been studied with a finite element model. It is shown that the equilibrium temperatures obtained in the Linac4 nominal operation mode (100 kW RF power, 2 Hz, 0.4 ms pulse duration) are within material specifications except for the magnet cage, where a redesign may be necessary. To assess the upgrade of the Linac4 source for operation in the high-power operation mode of SPL, an extrapolation of the heat load towards 100 kW RF power, 50 Hz repetition rate and 0.4 ms pulse duration has been performed. The results indicate that a significant improvement of the source cooling is required to allow for operation in HP-SPL.CERN-BE-Note-2010-005oai:cds.cern.ch:12408412010-02-15
spellingShingle Accelerators and Storage Rings
Faircloth, D
Kronberger, M
Kuchler, D
Lettry, L
Scrivens, R
Finite Element Thermal Study of the Linac4 Plasma Generatora
title Finite Element Thermal Study of the Linac4 Plasma Generatora
title_full Finite Element Thermal Study of the Linac4 Plasma Generatora
title_fullStr Finite Element Thermal Study of the Linac4 Plasma Generatora
title_full_unstemmed Finite Element Thermal Study of the Linac4 Plasma Generatora
title_short Finite Element Thermal Study of the Linac4 Plasma Generatora
title_sort finite element thermal study of the linac4 plasma generatora
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1240841
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AT kronbergerm finiteelementthermalstudyofthelinac4plasmageneratora
AT kuchlerd finiteelementthermalstudyofthelinac4plasmageneratora
AT lettryl finiteelementthermalstudyofthelinac4plasmageneratora
AT scrivensr finiteelementthermalstudyofthelinac4plasmageneratora