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Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre

A finite element modeling method to simplify the analysis of coupled thermal-structural model for the CLIC accelerating structure is presented. In addition, the results of thermal and structural analyses for the accelerating structure are presented. Instead of using a standard 3D computational flui...

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Autores principales: Raatikainen, Riku, Nousiainen, Risto, Österberg, Kenneth, Riddone, Germana, Samoshkin, Alexander, Gudkov, Dmitry
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1359658
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author Raatikainen, Riku
Nousiainen, Risto
Österberg, Kenneth
Riddone, Germana
Samoshkin, Alexander
Gudkov, Dmitry
author_facet Raatikainen, Riku
Nousiainen, Risto
Österberg, Kenneth
Riddone, Germana
Samoshkin, Alexander
Gudkov, Dmitry
author_sort Raatikainen, Riku
collection CERN
description A finite element modeling method to simplify the analysis of coupled thermal-structural model for the CLIC accelerating structure is presented. In addition, the results of thermal and structural analyses for the accelerating structure are presented. Instead of using a standard 3D computational fluid dynamics (CFD) method for solving problems involving fluid dynamics and heat transfer in 3D environment, one-dimensional fluid thermal elements are used. In one-dimensional flow, the governing equations of fluid dynamics are considerably simplified. Thus, it is expected that the computational time for more complex simulations becomes shorter. The method was first applied to several test models, which demonstrated the suitability of the one-dimensional flow modeling. The results show that one-dimensional fluid flow reduces the computation time considerably allowing the modeling for the future larger assemblies with sufficient accuracy.
id cern-1359658
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-13596582023-07-20T15:05:19Zhttp://cds.cern.ch/record/1359658engRaatikainen, RikuNousiainen, RistoÖsterberg, KennethRiddone, GermanaSamoshkin, AlexanderGudkov, DmitryApplying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutreAccelerators and Storage RingsA finite element modeling method to simplify the analysis of coupled thermal-structural model for the CLIC accelerating structure is presented. In addition, the results of thermal and structural analyses for the accelerating structure are presented. Instead of using a standard 3D computational fluid dynamics (CFD) method for solving problems involving fluid dynamics and heat transfer in 3D environment, one-dimensional fluid thermal elements are used. In one-dimensional flow, the governing equations of fluid dynamics are considerably simplified. Thus, it is expected that the computational time for more complex simulations becomes shorter. The method was first applied to several test models, which demonstrated the suitability of the one-dimensional flow modeling. The results show that one-dimensional fluid flow reduces the computation time considerably allowing the modeling for the future larger assemblies with sufficient accuracy.CERN-OPEN-2011-032CLIC-Note-881oai:cds.cern.ch:13596582010-08-16
spellingShingle Accelerators and Storage Rings
Raatikainen, Riku
Nousiainen, Risto
Österberg, Kenneth
Riddone, Germana
Samoshkin, Alexander
Gudkov, Dmitry
Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre
title Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre
title_full Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre
title_fullStr Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre
title_full_unstemmed Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre
title_short Applying one-dimensional fluid thermal elements into a 3D CLIC accelerating strucutre
title_sort applying one-dimensional fluid thermal elements into a 3d clic accelerating strucutre
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1359658
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AT riddonegermana applyingonedimensionalfluidthermalelementsintoa3dclicacceleratingstrucutre
AT samoshkinalexander applyingonedimensionalfluidthermalelementsintoa3dclicacceleratingstrucutre
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