Articles producció científicaEnginyeria Mecànica

Heat transfer and boundary layer analyses of laminar and turbulent natural convection in a cubical cavity with differently heated opposed walls

  • Dades identificatives

    Identificador:  imarina:6063480
    Autors:  Fabregat, Alexandre; Pallares, Jordi
    Resum:
    © 2020 The buoyancy-driven flow in a cubical cavity with differently heated opposed walls has been chosen to investigate the laminar and turbulent heat transfer in enclosed domains. This type of configuration contains the essential physics existing in flows where transport between a fluid and an adjacent solid surface is controlled by the existence of boundary layers. The dependence of the wall heat transfer on the buoyancy force over the range Ra=105 to Ra=5.4×108 has been investigated, for air (Pr=0.7), using Direct Numerical Simulations. Under the assumption of mixed convection flow within the boundary layer produced by the combined effect of buoyancy and forced convection due to the large-scale flow, we assessed the validity of classical 2D boundary layer solutions in this flow configuration. The resulting characterization of the near-wall flow allows to derive new semi-analytical models for wall transfer applications in enclosed cavities.
  • Altres:

    Autor segons l'article: Fabregat, Alexandre; Pallares, Jordi
    Departament: Enginyeria Mecànica
    Autor/s de la URV: Fabregat Tomàs, Alexandre / Pallarés Curto, Jorge María
    Paraules clau: Turbulent heat transport; Thermal boundary layer; Direct numerical simulation; Cavity flow
    Resum: © 2020 The buoyancy-driven flow in a cubical cavity with differently heated opposed walls has been chosen to investigate the laminar and turbulent heat transfer in enclosed domains. This type of configuration contains the essential physics existing in flows where transport between a fluid and an adjacent solid surface is controlled by the existence of boundary layers. The dependence of the wall heat transfer on the buoyancy force over the range Ra=105 to Ra=5.4×108 has been investigated, for air (Pr=0.7), using Direct Numerical Simulations. Under the assumption of mixed convection flow within the boundary layer produced by the combined effect of buoyancy and forced convection due to the large-scale flow, we assessed the validity of classical 2D boundary layer solutions in this flow configuration. The resulting characterization of the near-wall flow allows to derive new semi-analytical models for wall transfer applications in enclosed cavities.
    Àrees temàtiques: Thermodynamics; Mechanics; Mechanical engineering; Materiais; Matemática / probabilidade e estatística; Interdisciplinar; Geociências; Fluid flow and transfer processes; Engineering, mechanical; Engenharias iv; Engenharias iii; Engenharias ii; Engenharias i; Condensed matter physics; Ciências biológicas i; Ciências ambientais; Ciências agrárias i; Ciência de alimentos; Biotecnología; Astronomia / física
    Accès a la llicència d'ús: https://creativecommons.org/licenses/by/3.0/es/
    Adreça de correu electrònic de l'autor: alexandre.fabregat@urv.cat; jordi.pallares@urv.cat
    ISSN: 00179310
    Data d'alta del registre: 2025-01-27
    Versió de l'article dipositat: info:eu-repo/semantics/acceptedVersion
    Enllaç font original: https://www.sciencedirect.com/science/article/abs/pii/S001793101935731X
    Referència a l'article segons font original: International Journal Of Heat And Mass Transfer. 151 (119409): 119409-
    Referència de l'ítem segons les normes APA: Fabregat, Alexandre; Pallares, Jordi (2020). Heat transfer and boundary layer analyses of laminar and turbulent natural convection in a cubical cavity with differently heated opposed walls. International Journal Of Heat And Mass Transfer, 151(119409), 119409-. DOI: 10.1016/j.ijheatmasstransfer.2020.119409
    URL Document de llicència: https://repositori.urv.cat/ca/proteccio-de-dades/
    DOI de l'article: 10.1016/j.ijheatmasstransfer.2020.119409
    Entitat: Universitat Rovira i Virgili
    Any de publicació de la revista: 2020
    Tipus de publicació: Journal Publications
  • Paraules clau:

    Condensed Matter Physics,Engineering, Mechanical,Fluid Flow and Transfer Processes,Mechanical Engineering,Mechanics,Thermodynamics
    Turbulent heat transport
    Thermal boundary layer
    Direct numerical simulation
    Cavity flow
    Thermodynamics
    Mechanics
    Mechanical engineering
    Materiais
    Matemática / probabilidade e estatística
    Interdisciplinar
    Geociências
    Fluid flow and transfer processes
    Engineering, mechanical
    Engenharias iv
    Engenharias iii
    Engenharias ii
    Engenharias i
    Condensed matter physics
    Ciências biológicas i
    Ciências ambientais
    Ciências agrárias i
    Ciência de alimentos
    Biotecnología
    Astronomia / física
    00179310
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