Experimental analysis of sloshing-induced thermal mixing in horizontally oriented cylindrical tanks subjected to vertical acceleration

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Main Authors: De Maria, Tommaso, Manuel Fernandes, Francisco Monteiro, Ahizi, Samuel, abarca lópez, ramón, Caridi, Giuseppe Carlo Alp, Mendez, Miguel Alfonso
Format: Recurso digital
Language:English
Published: Zenodo 2025
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author De Maria, Tommaso
Manuel Fernandes, Francisco Monteiro
Ahizi, Samuel
abarca lópez, ramón
Caridi, Giuseppe Carlo Alp
Mendez, Miguel Alfonso
author_facet De Maria, Tommaso
Manuel Fernandes, Francisco Monteiro
Ahizi, Samuel
abarca lópez, ramón
Caridi, Giuseppe Carlo Alp
Mendez, Miguel Alfonso
contents <p>This work presents an experimental investigation of sloshing-induced pressure drop in a thermally stratified horizontal tank subjected to vertical harmonic acceleration. Using HFE-7000 as a cryogenic surrogate<br>fluid, we simulate various sloshing intensities and fill levels under controlled thermal conditions. A simplified inverse method is applied to estimate time-resolved heat transfer coefficients and Nusselt number.<br>The results identify two distinct phases: an initial pressure drop driven by vapor cooling, followed by a<br>decay dominated by condensation.</p>
format Recurso digital
id zenodo_https___doi_org_10_13009_EUCASS2025-618
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Experimental analysis of sloshing-induced thermal mixing in horizontally oriented cylindrical tanks subjected to vertical acceleration
De Maria, Tommaso
Manuel Fernandes, Francisco Monteiro
Ahizi, Samuel
abarca lópez, ramón
Caridi, Giuseppe Carlo Alp
Mendez, Miguel Alfonso
<p>This work presents an experimental investigation of sloshing-induced pressure drop in a thermally stratified horizontal tank subjected to vertical harmonic acceleration. Using HFE-7000 as a cryogenic surrogate<br>fluid, we simulate various sloshing intensities and fill levels under controlled thermal conditions. A simplified inverse method is applied to estimate time-resolved heat transfer coefficients and Nusselt number.<br>The results identify two distinct phases: an initial pressure drop driven by vapor cooling, followed by a<br>decay dominated by condensation.</p>
title Experimental analysis of sloshing-induced thermal mixing in horizontally oriented cylindrical tanks subjected to vertical acceleration
url https://doi.org/10.13009/EUCASS2025-618