Articles producció científicaEnginyeria Mecànica

A model to predict the short-term turbulent indoor dispersion of small droplets and droplet nuclei released from coughs and sneezes

  • Identification data

    Identifier:  imarina:9245510
    Authors:  Pallares, J; Fabregat, A
    Abstract:
    We propose a simple model to predict the short-term indoor turbulent dispersion of the aerosol cloud produced by violent expiratory events. Once the air injection ceases, the turbulent jet transitions to a thermal puff that progressively decays due to viscous effects. According to recent literature, the expelled liquid droplets of saliva and sputum smaller than 20-30 mu m in diameter stay afloat within this decaying turbulent puff. In contrast, droplets larger than 100 mu m tend to leave the puff following quasi-ballistic trajectories and landing on the floor at relatively short times after release. The model presented here is capable of providing good estimates for the shape and dimensions of the cloud composed of the lighter fraction of droplets as a function of the intensity and the duration of the flow injection and the density difference between the exhaled and the ambient air. Predictions agree with Direct Numerical Simulations and experiments reported in the literature. This model can be used as an operational tool to determine the short-term spatial range of expelled droplets and provides realistic initial conditions for simulations of long-term dispersion of pathogen-laden clouds in indoor environments with forced and natural ventilation.
  • Others:

    Link to the original source: https://journals.sagepub.com/doi/abs/10.1177/1420326X211060001
    APA: Pallares, J; Fabregat, A (2022). A model to predict the short-term turbulent indoor dispersion of small droplets and droplet nuclei released from coughs and sneezes. Indoor And Built Environment, 31(5), 1393-1404. DOI: 10.1177/1420326x211060001
    Paper original source: Indoor And Built Environment. 31 (5): 1393-1404
    Article's DOI: 10.1177/1420326x211060001
    Journal publication year: 2022-05-01
    Entity: Universitat Rovira i Virgili
    Paper version: info:eu-repo/semantics/acceptedVersion
    Record's date: 2026-05-09
    URV's Author/s: Fabregat Tomàs, Alexandre / Pallarés Curto, Jorge María
    Department: Enginyeria Mecànica
    Licence document URL: https://repositori.urv.cat/ca/proteccio-de-dades/
    Publication Type: Journal Publications
    Author, as appears in the article.: Pallares, J; Fabregat, A
    licence for use: https://creativecommons.org/licenses/by/3.0/es/
    Thematic Areas: Public, environmental & occupational health, Public health, environmental and occupational health, Engineering, environmental, Engenharias i, Enfermagem, Construction & building technology, Building and construction, Arquitetura, urbanismo e design, Allergy
    Author's mail: alexandre.fabregat@urv.cat, alexandre.fabregat@urv.cat, alexandre.fabregat@urv.cat, jordi.pallares@urv.cat, jordi.pallares@urv.cat
  • Keywords:

    Unsteady jet
    Turbulent puff
    Turbulent jet
    Transport
    Speech
    Sneeze
    Indoor dispersion
    Fluid-dynamics
    Flow
    Cough
    Airborne infection
    Allergy
    Construction & Building Technology
    Engineering
    Environmental
    Public Health
    Environmental and Occupational Health
    Public
    Environmental & Occupational Health
    Engenharias i
    Enfermagem
    Building and construction
    Arquitetura
    urbanismo e design
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