Articles producció científicaEnginyeria Mecànica

Transport and wall surface deposition of airborne particles in enclosed

  • Datos identificativos

    Identificador:  imarina:9262234
    Autores:  Fabregat, Alexandre; Pallares, Jordi
    Resumen:
    Airborne particle transport and deposition on solid surfaces play a key role in aerosol deposition, infectious diseases transmission and surface soiling. Moving fluids disperse particles by the action of several forces including drag, lift, thermophoresis, buoyancy and Brownian effects. The relative importance of each contribution depends on the phases density ratio and the particle size. These two parameters, along with the characteristics of the boundary layers, control the local wall deposition rate. Experiments and analytical solutions have provided partial information on deposition velocity for several particle sizes and turbulent intensities in air filled cavities. While experimental data is restricted to few selected wall locations, boundary layer models results only provide wall-average values. Using Direct Numerical Simulations to solve the flow hydrodynamics and Exponential-Lagrangian Tracking Schemes for the disperse phase, deposition rates on each surface of a cubical cavity with oppositely heated walls have been determined. Numerical results at Ra = 5.4 × 108 are in very good agreement with experiments for 0.1 and 0.5 μm particle diameters. Deposition rate on adiabatic walls is found to be spatially inhomogeneous with particles accumulating near the corners where hot and cold walls meet. These preferential spots are explained by intensified wall-normal turbulent transport in these particular regions.
  • Otros:

    Enlace a la fuente original: https://www.sciencedirect.com/science/article/pii/S0735193322001701?via%3Dihub
    Referencia de l'ítem segons les normes APA: Fabregat, Alexandre; Pallares, Jordi (2022). Transport and wall surface deposition of airborne particles in enclosed, buoyancy-driven turbulent flows using fully-resolved numerical simulations. International Communications In Heat And Mass Transfer, 134(), 106048-. DOI: 10.1016/j.icheatmasstransfer.2022.106048
    Referencia al articulo segun fuente origial: International Communications In Heat And Mass Transfer. 134 106048-
    DOI del artículo: 10.1016/j.icheatmasstransfer.2022.106048
    Año de publicación de la revista: 2022
    Entidad: Universitat Rovira i Virgili
    Versión del articulo depositado: info:eu-repo/semantics/publishedVersion
    Fecha de alta del registro: 2025-01-27
    Autor/es de la URV: Fabregat Tomàs, Alexandre / Pallarés Curto, Jorge María
    Departamento: Enginyeria Mecànica
    URL Documento de licencia: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipo de publicación: Journal Publications
    Autor según el artículo: Fabregat, Alexandre; Pallares, Jordi
    Acceso a la licencia de uso: https://creativecommons.org/licenses/by/3.0/es/
    Áreas temáticas: Thermodynamics, Química, Mechanics, Interdisciplinar, General chemical engineering, Engenharias iv, Engenharias iii, Engenharias ii, Condensed matter physics, Ciências biológicas i, Chemical engineering (miscellaneous), Chemical engineering (all), Biotecnología, Atomic and molecular physics, and optics, Astronomia / física
    Direcció de correo del autor: alexandre.fabregat@urv.cat, jordi.pallares@urv.cat
  • Palabras clave:

    Wall particle deposition
    Turbulent transport
    Thermophoresis
    Natural convection
    Large-eddy simulation
    Direct numerical simulation
    Brownian motion
    rectangular enclosures
    natural-convection
    laden flow
    cavities
    Atomic and Molecular Physics
    and Optics
    Chemical Engineering (Miscellaneous)
    Condensed Matter Physics
    Mechanics
    Thermodynamics
    Química
    Interdisciplinar
    General chemical engineering
    Engenharias iv
    Engenharias iii
    Engenharias ii
    Ciências biológicas i
    Chemical engineering (all)
    Biotecnología
    Astronomia / física
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