A Space-Time FE Level-set method for convection coupled phase-change processes

dc.contributor.authorBoledi, Leonardoes_ES
dc.contributor.authorTerschanski, Benjamines_ES
dc.contributor.authorElgeti, Stefaniees_ES
dc.contributor.authorKowalski, Juliaes_ES
dc.contributor.funderBundesministerium für Wirtschaft und Energie, Alemaniaes_ES
dc.contributor.funderHelmholtz School for Data Science in Life, Earth and Energyes_ES
dc.date.accessioned2022-09-29T09:51:38Z
dc.date.available2022-09-29T09:51:38Z
dc.date.issued2022-05-11
dc.description.abstract[EN] Phase transition processes have great relevance for both engineering and scientific applications. In production engineering, for instance, metal welding and alloy solidification are topics of ongoing research.In this contribution we focus on the convection coupled solid-liquid phase change of a single species, e.g. water. The material is assumed to be incompressible within the two phases, but we account for density changes across the phase interface. To describe the process, we need to solve the incompressible Navier-Stokes equations and the heat equation for both phases over time. The position of the phase interface is tracked with a Level-set method. The Level-set function is advected according to the propagation speed of the phase interface. Such velocity field depends on local energy conservation across the interface and is modelled as the Stefan condition. This formulation requires us to approximate the heat flux discontinuity across the interface based on the evolving temperature and velocity fields.To model the temperature and velocity fields within each phase, we employ the Space-Time Finite Element method. However, commonly used interpolation functions, such as piecewise linear functions, fail to capture discontinuous derivatives over one element that are needed to assess the Level-set's transport term. Available solutions to this matter, such as local enrichment with Extended Finite Elements, are often not compatible with existing Space-Time Finite Element codes and require extensive implementation work. Instead, we consider a conceptually simpler method and we decide to extend the Ghost Cell technique to Finite Element meshes. The idea is that we can separate the two subdomains associated with each phase and solve two independent temperature problems. We prescribe the melting temperature at an additional node close to the interface and we retrieve the required heat flux.In this work we describe the Ghost Cell method applied to our Space-Time Finite Element solver. First, we verify numerical results against analytical solutions, then we demonstrate more complex test cases in 2D and 3D.en_EN
dc.description.accrualMethodOCSes_ES
dc.description.bibliographicCitationBoledi, L.; Terschanski, B.; Elgeti, S.; Kowalski, J. (2022). A Space-Time FE Level-set method for convection coupled phase-change processes. En Proceedings of the YIC 2021 - VI ECCOMAS Young Investigators Conference. Editorial Universitat Politècnica de València. 206-213. https://doi.org/10.4995/YIC2021.2021.12329es_ES
dc.description.sponsorshipThe authors were supported by the Helmholtz Graduate School for Data Science in Life, Earth and Energy (HDS-LEE). The work was furthermore supported by the Federal Ministry of Economic Affairs and Energy, on the basis of a decision by the German Bundestag (50 NA 1908). The authors gratefully acknowledge the computing time granted by the JARA Vergabegremium and provided on the JARA Partition part of the supercomputer JURECA at Forschungszentrum Jülich .es_ES
dc.description.upvformatpfin213es_ES
dc.description.upvformatpinicio206es_ES
dc.format.extent8es_ES
dc.identifier.doi10.4995/YIC2021.2021.12329
dc.identifier.isbn9788490489697
dc.identifier.urihttps://riunet.upv.es/handle/10251/186716
dc.languageIngléses_ES
dc.publisherEditorial Universitat Politècnica de Valènciaes_ES
dc.relation.conferencedateJulio 07-09, 2021es_ES
dc.relation.conferencenameVI ECCOMAS Young Investigators Conferencees_ES
dc.relation.conferenceplaceValencia, Españaes_ES
dc.relation.ispartofProceedings of the YIC 2021 - VI ECCOMAS Young Investigators Conference
dc.relation.pasarelaOCS\12329es_ES
dc.relation.projectIDinfo:eu-repo/grantAgreement/BMWI//50 NA 1908es_ES
dc.relation.publisherversionhttp://ocs.editorial.upv.es/index.php/YIC/YIC2021/paper/view/12329es_ES
dc.rightsReconocimiento - No comercial - Compartir igual (by-nc-sa)es_ES
dc.rights.accessRightsAbiertoes_ES
dc.subjectSpace-Time Finite Elementses_ES
dc.subjectLevel-setes_ES
dc.subjectGhost Cellses_ES
dc.subjectPhase Changees_ES
dc.subjectStefan Problemes_ES
dc.titleA Space-Time FE Level-set method for convection coupled phase-change processeses_ES
dc.typeCapítulo de libroes_ES
dc.typeComunicación en congresoes_ES
dc.type.versioninfo:eu-repo/semantics/publishedVersiones_ES
dspace.entity.typePublication
upv.uuidb6a8a453-c480-4bcb-950b-1bcfa4438ef7es_ES

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