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Numerical and experimental study of open-cell foams for the characterization of heat exchangers

A multiscale model of open-cell foams is developed for the characterization of heat exchangers. The model is applicable to a wide range of materials, cell sizes, and porosities. The microscopic geometry is based on a periodic model that is defined by the porosity and the specific surface area of the...

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Detalles Bibliográficos
Autores principales: Amatriain, Aitor, Gargiulo, Corrado, Rubio, Gonzalo
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.ijheatmasstransfer.2023.124701
http://cds.cern.ch/record/2867557
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author Amatriain, Aitor
Gargiulo, Corrado
Rubio, Gonzalo
author_facet Amatriain, Aitor
Gargiulo, Corrado
Rubio, Gonzalo
author_sort Amatriain, Aitor
collection CERN
description A multiscale model of open-cell foams is developed for the characterization of heat exchangers. The model is applicable to a wide range of materials, cell sizes, and porosities. The microscopic geometry is based on a periodic model that is defined by the porosity and the specific surface area of the foam considered. The representative geometrical scales of the model are validated with microscope images and computed tomography scans. The outputs of the microscopic model are the coefficients of the parabolic pressure loss curve, the thermal conductivity, and the Nusselt number. These values are used as inputs of the macroscopic model that determines the thermal performance of a macroscopic system. The results given by the models are compared with experimental data obtained from the literature, and from an experimental setup built at CERN. It is concluded that the multiscale model provides accurate results in all open-cell foams considered.
id cern-2867557
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28675572023-10-18T09:35:31Zdoi:10.1016/j.ijheatmasstransfer.2023.124701http://cds.cern.ch/record/2867557engAmatriain, AitorGargiulo, CorradoRubio, GonzaloNumerical and experimental study of open-cell foams for the characterization of heat exchangersphysics.flu-dynOther Fields of PhysicsA multiscale model of open-cell foams is developed for the characterization of heat exchangers. The model is applicable to a wide range of materials, cell sizes, and porosities. The microscopic geometry is based on a periodic model that is defined by the porosity and the specific surface area of the foam considered. The representative geometrical scales of the model are validated with microscope images and computed tomography scans. The outputs of the microscopic model are the coefficients of the parabolic pressure loss curve, the thermal conductivity, and the Nusselt number. These values are used as inputs of the macroscopic model that determines the thermal performance of a macroscopic system. The results given by the models are compared with experimental data obtained from the literature, and from an experimental setup built at CERN. It is concluded that the multiscale model provides accurate results in all open-cell foams considered.arXiv:2306.03699oai:cds.cern.ch:28675572023-06-06
spellingShingle physics.flu-dyn
Other Fields of Physics
Amatriain, Aitor
Gargiulo, Corrado
Rubio, Gonzalo
Numerical and experimental study of open-cell foams for the characterization of heat exchangers
title Numerical and experimental study of open-cell foams for the characterization of heat exchangers
title_full Numerical and experimental study of open-cell foams for the characterization of heat exchangers
title_fullStr Numerical and experimental study of open-cell foams for the characterization of heat exchangers
title_full_unstemmed Numerical and experimental study of open-cell foams for the characterization of heat exchangers
title_short Numerical and experimental study of open-cell foams for the characterization of heat exchangers
title_sort numerical and experimental study of open-cell foams for the characterization of heat exchangers
topic physics.flu-dyn
Other Fields of Physics
url https://dx.doi.org/10.1016/j.ijheatmasstransfer.2023.124701
http://cds.cern.ch/record/2867557
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AT gargiulocorrado numericalandexperimentalstudyofopencellfoamsforthecharacterizationofheatexchangers
AT rubiogonzalo numericalandexperimentalstudyofopencellfoamsforthecharacterizationofheatexchangers