Numerical Modeling Of Freezing Water Droplets

Bibliographic Details
Main Author: Magalhães, Leandro
Publication Date: 2022
Other Authors: Meireles, Rúben D. S. O., Silva, A. R. R., Barata, Jorge M M
Language: eng
Source: Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)
Download full: http://hdl.handle.net/10400.6/12564
Summary: This work enhances the understanding of droplet dynamics under cryogenics conditions through an in-house developed analytical tool used to predict the supercooling of water droplets. The physical process is based on a full-scale four-stage supercooling process in which the recalescence stage is assumed instantaneous and the crystallization kinematics of the droplet neglected. The transition temperature of each stage is obtained, resorting to a theoretical balance for the droplets internal energy against the heat loss to the environment. In this way, the representation for the droplets temperature curves alongside the time. The droplets are considered spherical, and the internal motion is so vigorous that complete mixing occurs. The droplets convective effects are accounted for using the Ranz-Marshall classical formulation.
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spelling Numerical Modeling Of Freezing Water DropletsFour-stage freezingSupercoolingDroplets’ coolingThis work enhances the understanding of droplet dynamics under cryogenics conditions through an in-house developed analytical tool used to predict the supercooling of water droplets. The physical process is based on a full-scale four-stage supercooling process in which the recalescence stage is assumed instantaneous and the crystallization kinematics of the droplet neglected. The transition temperature of each stage is obtained, resorting to a theoretical balance for the droplets internal energy against the heat loss to the environment. In this way, the representation for the droplets temperature curves alongside the time. The droplets are considered spherical, and the internal motion is so vigorous that complete mixing occurs. The droplets convective effects are accounted for using the Ranz-Marshall classical formulation.Begell HouseuBibliorumMagalhães, LeandroMeireles, Rúben D. S. O.Silva, A. R. R.Barata, Jorge M M2022-05-152060-05-15T00:00:00Z2022-05-15T00:00:00Zconference objectinfo:eu-repo/semantics/publishedVersionapplication/pdfhttp://hdl.handle.net/10400.6/12564eng2379174810.1615/TFEC2022.fnd.040881info:eu-repo/semantics/embargoedAccessreponame:Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)instname:FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiainstacron:RCAAP2025-03-11T15:54:44Zoai:ubibliorum.ubi.pt:10400.6/12564Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireinfo@rcaap.ptopendoar:https://opendoar.ac.uk/repository/71602025-05-29T01:29:58.123309Repositórios Científicos de Acesso Aberto de Portugal (RCAAP) - FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiafalse
dc.title.none.fl_str_mv Numerical Modeling Of Freezing Water Droplets
title Numerical Modeling Of Freezing Water Droplets
spellingShingle Numerical Modeling Of Freezing Water Droplets
Magalhães, Leandro
Four-stage freezing
Supercooling
Droplets’ cooling
title_short Numerical Modeling Of Freezing Water Droplets
title_full Numerical Modeling Of Freezing Water Droplets
title_fullStr Numerical Modeling Of Freezing Water Droplets
title_full_unstemmed Numerical Modeling Of Freezing Water Droplets
title_sort Numerical Modeling Of Freezing Water Droplets
author Magalhães, Leandro
author_facet Magalhães, Leandro
Meireles, Rúben D. S. O.
Silva, A. R. R.
Barata, Jorge M M
author_role author
author2 Meireles, Rúben D. S. O.
Silva, A. R. R.
Barata, Jorge M M
author2_role author
author
author
dc.contributor.none.fl_str_mv uBibliorum
dc.contributor.author.fl_str_mv Magalhães, Leandro
Meireles, Rúben D. S. O.
Silva, A. R. R.
Barata, Jorge M M
dc.subject.por.fl_str_mv Four-stage freezing
Supercooling
Droplets’ cooling
topic Four-stage freezing
Supercooling
Droplets’ cooling
description This work enhances the understanding of droplet dynamics under cryogenics conditions through an in-house developed analytical tool used to predict the supercooling of water droplets. The physical process is based on a full-scale four-stage supercooling process in which the recalescence stage is assumed instantaneous and the crystallization kinematics of the droplet neglected. The transition temperature of each stage is obtained, resorting to a theoretical balance for the droplets internal energy against the heat loss to the environment. In this way, the representation for the droplets temperature curves alongside the time. The droplets are considered spherical, and the internal motion is so vigorous that complete mixing occurs. The droplets convective effects are accounted for using the Ranz-Marshall classical formulation.
publishDate 2022
dc.date.none.fl_str_mv 2022-05-15
2022-05-15T00:00:00Z
2060-05-15T00:00:00Z
dc.type.driver.fl_str_mv conference object
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status_str publishedVersion
dc.identifier.uri.fl_str_mv http://hdl.handle.net/10400.6/12564
url http://hdl.handle.net/10400.6/12564
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv 23791748
10.1615/TFEC2022.fnd.040881
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dc.publisher.none.fl_str_mv Begell House
publisher.none.fl_str_mv Begell House
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