Articles producció científicaQuímica Física i Inorgànica

Analysis of three-dimensional thermocapillary flows during PCM melting in large aspect ratio containers in microgravity using POD

  • Dades identificatives

    Identificador:  imarina:9462597
    Autors:  Sanchez, P Salgado; Ruiz, X; Massons, J; Porter, J; Ezquerro, J M; Gavalda, Jna
    Resum:
    The three-dimensional thermocapillary-driven melting of a phase change material (PCM) in a large-aspect-ratio cuboidal domain in microgravity is investigated numerically. The dynamics within the liquid phase is characterized by various mode transitions that can affect the heat transfer rate. Here we describe the types of melting dynamics that can occur with a selection of three different applied temperature differences Delta T and four different choices of container width W. A proper orthogonal decomposition (POD) method using Singular Value Decomposition (SVD) is applied to determine the dominant modes that describe the melting process, with particular attention to the transition to oscillatory flow. It is found that the oscillatory dynamics are typically associated with an interaction between oblique and longitudinal hydrothermal traveling waves, and that the latter have a slightly lower frequency. The leading-order oscillatory modes may be symmetric with respect to the lateral midplane or not, depending on the applied temperature and the spanwise aspect ratio. Mode (frequency) splitting is sometimes observed, as well as secondary harmonic modes satisfying a 1:2 spatiotemporal resonance condition. These results show that PCM melting is a complex dynamical process involving competition among various hydrothermal traveling waves with distinct orientation and that symmetry-breaking and spatiotemporal resonance play prominent roles in the mode selection problem.
  • Altres:

    Enllaç font original: https://www.sciencedirect.com/science/article/pii/S0735193325007158?via%3Dihub
    Referència de l'ítem segons les normes APA: Sanchez, P Salgado; Ruiz, X; Massons, J; Porter, J; Ezquerro, J M; Gavalda, Jna (2025). Analysis of three-dimensional thermocapillary flows during PCM melting in large aspect ratio containers in microgravity using POD. International Communications In Heat And Mass Transfer, 167(), 109289-. DOI: 10.1016/j.icheatmasstransfer.2025.109289
    Referència a l'article segons font original: International Communications In Heat And Mass Transfer. 167 109289-
    DOI de l'article: 10.1016/j.icheatmasstransfer.2025.109289
    Any de publicació de la revista: 2025
    Entitat: Universitat Rovira i Virgili
    Versió de l'article dipositat: info:eu-repo/semantics/publishedVersion
    Data d'alta del registre: 2025-08-02
    Autor/s de la URV: Gavaldà Martínez, Josefa / Masons Bosch, Jaime
    Departament: Química Física i Inorgànica
    URL Document de llicència: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipus de publicació: Journal Publications
    Autor segons l'article: Sanchez, P Salgado; Ruiz, X; Massons, J; Porter, J; Ezquerro, J M; Gavalda, Jna
    Accès a la llicència d'ús: https://creativecommons.org/licenses/by/3.0/es/
    Àrees temàtiques: Astronomia / física, Atomic and molecular physics, and optics, Biotecnología, Chemical engineering (all), Chemical engineering (miscellaneous), Ciências biológicas i, Condensed matter physics, Engenharias ii, Engenharias iii, Engenharias iv, General chemical engineering, Interdisciplinar, Mechanics, Química, Thermodynamics
    Adreça de correu electrònic de l'autor: fina.gavalda@urv.cat, jaume.masons@urv.cat
  • Paraules clau:

    Convection
    Desig
    Heat
    Melting
    Microgravity
    Phase change materials
    Phase-change materials
    Po
    Pod
    Reduction
    Solidification
    Thermocapillary effect
    Atomic and Molecular Physics
    and Optics
    Chemical Engineering (Miscellaneous)
    Condensed Matter Physics
    Mechanics
    Thermodynamics
    Astronomia / física
    Biotecnología
    Chemical engineering (all)
    Ciências biológicas i
    Engenharias ii
    Engenharias iii
    Engenharias iv
    General chemical engineering
    Interdisciplinar
    Química
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