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Comparison of geometrical layouts for a multi-box aerosol model from a single-chamber dispersion study

  • A.C.Ø. Jensen
  • , M. Dal Maso
  • , AJ Koivisto
  • , E. Belut
  • , A. Meyer-Plath
  • , Martie van Tongeren
  • , A.S. Jiménez
  • , Ilse Tuinman
  • , M. Domat
  • , Jørn Toftum
  • , Ismo Kalevi Koponen
  • Tampere University of Technology
  • University of Manchester
  • TNO, The Netherlands.
  • FORCE Technology
  • INRS, France.
  • Federal Institute for Occupational Safety and Health (BAuA), Berlin, Germany.
  • IOM, UK.
  • ITENE
  • Danmarks Tekniske Universitet

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

Models are increasingly used to estimate and pre-emptively calculate the occupational exposure of airborne released particulate matter. Typical two-box models assume instant and fully mixed air volumes, which can potentially cause issues in cases with fast processes, slow air mixing, and/or large volumes. In this study, we present an aerosol dispersion model and validate it by comparing the modelled concentrations with concentrations measured during chamber experiments. We investigated whether a better estimation of concentrations was possible by using different geometrical layouts rather than a typical two-box layout. A one-box, two-box, and two three-box layouts were used. The one box model was found to underestimate the concentrations close to the source, while overestimating the concentrations in the far field. The two-box model layout performed well based on comparisons from the chamber study in systems with a steady source concentration for both slow and fast mixing. The three-box layout was found to better estimate the concentrations and the timing of the peaks for fluctuating concentrations than the one-box or two-box layouts under relatively slow mixing conditions. This finding suggests that industry-relevant scaled volumes should be tested in practice to gain more knowledge about when to use the two-box or the three-box layout schemes for multi-box models
OriginalsprogEngelsk
Artikelnummer52
TidsskriftEnvironments
Vol/bind5
Udgave nummer5
ISSN2076-3298
DOI
StatusUdgivet - 24 apr. 2018

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