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Experimental study of three-phase helium mixtures in confined channels
An experimental campaign was conducted to investigate heat and mass transfer phenomena in superfluid helium (He II) in two rectangular cross-section channels of high aspect ratios and different thickness resembling the space between steel collars in the LHC superconducting magnets. The experiments c...
Autores principales: | , , , |
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Lenguaje: | eng |
Publicado: |
2023
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.cryogenics.2023.103741 http://cds.cern.ch/record/2876299 |
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author | Vitrano, Andrea Stepanov, Vadim Authelet, Gilles Baudouy, Bertrand |
author_facet | Vitrano, Andrea Stepanov, Vadim Authelet, Gilles Baudouy, Bertrand |
author_sort | Vitrano, Andrea |
collection | CERN |
description | An experimental campaign was conducted to investigate heat and mass transfer phenomena in superfluid helium (He II) in two rectangular cross-section channels
of high aspect ratios and different thickness resembling the space between steel collars in the LHC superconducting magnets. The experiments consisted of clamped
heat flux tests at atmospheric pressure, in which a heater strip suddenly releases a constant heat load into the channel that is open to a helium bath on one side. The
difference in thickness between the two channels allowed exploring the effect of the geometrical confinement on the propagation of both phase change fronts: i) the
He II-He I 𝜆-transition front; ii) the He I-vapour first-order transition front.
The observations show that, in the thinner channel, it is possible to distinguish different behaviours of the phase fronts depending on the extent of the heat flux. For
increasing heat flux values, the 𝜆-front speed successively increases sharply, decreases, and increases weakly. This sequence is determined by the presence of the
vapour film, which either diminishes the He II-He I transformation rate by lowering the heat transfer or pushes the 𝜆-front while expanding. In the thicker channel,
the intermediate behaviour is absent as the level of confinement is lower and the He I phase never expands considerably along the highest dimension of the channel. |
id | cern-2876299 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2023 |
record_format | invenio |
spelling | cern-28762992023-10-20T19:55:40Zdoi:10.1016/j.cryogenics.2023.103741http://cds.cern.ch/record/2876299engVitrano, AndreaStepanov, VadimAuthelet, GillesBaudouy, BertrandExperimental study of three-phase helium mixtures in confined channelsPhysics in GeneralAccelerators and Storage RingsAn experimental campaign was conducted to investigate heat and mass transfer phenomena in superfluid helium (He II) in two rectangular cross-section channels of high aspect ratios and different thickness resembling the space between steel collars in the LHC superconducting magnets. The experiments consisted of clamped heat flux tests at atmospheric pressure, in which a heater strip suddenly releases a constant heat load into the channel that is open to a helium bath on one side. The difference in thickness between the two channels allowed exploring the effect of the geometrical confinement on the propagation of both phase change fronts: i) the He II-He I 𝜆-transition front; ii) the He I-vapour first-order transition front. The observations show that, in the thinner channel, it is possible to distinguish different behaviours of the phase fronts depending on the extent of the heat flux. For increasing heat flux values, the 𝜆-front speed successively increases sharply, decreases, and increases weakly. This sequence is determined by the presence of the vapour film, which either diminishes the He II-He I transformation rate by lowering the heat transfer or pushes the 𝜆-front while expanding. In the thicker channel, the intermediate behaviour is absent as the level of confinement is lower and the He I phase never expands considerably along the highest dimension of the channel.oai:cds.cern.ch:28762992023 |
spellingShingle | Physics in General Accelerators and Storage Rings Vitrano, Andrea Stepanov, Vadim Authelet, Gilles Baudouy, Bertrand Experimental study of three-phase helium mixtures in confined channels |
title | Experimental study of three-phase helium mixtures in confined channels |
title_full | Experimental study of three-phase helium mixtures in confined channels |
title_fullStr | Experimental study of three-phase helium mixtures in confined channels |
title_full_unstemmed | Experimental study of three-phase helium mixtures in confined channels |
title_short | Experimental study of three-phase helium mixtures in confined channels |
title_sort | experimental study of three-phase helium mixtures in confined channels |
topic | Physics in General Accelerators and Storage Rings |
url | https://dx.doi.org/10.1016/j.cryogenics.2023.103741 http://cds.cern.ch/record/2876299 |
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