A field trial involving 50 separate releases of inert aerosol (kaolin) was conducted to determine the concentration distribution within aerosol puffs resulting from near-instantaneous releases. Atmospheric conditions during the trial fell within Pasquill stability classes A and B (very and moderately unstable, respectively). Aerosol concentration measurements were made using a scanning lidar system operating at 1·06 μm. Artificial neural network (ANN) models were developed using the data to predict concentration distributions, given a number of meteorological parameters. The ANN predictions were compared to those from traditional Gaussian puff models, and provided better predictions than the Gaussian model parameterizations examined. The ANN models were also used to develop Gaussian fitting parameters to replace traditional Pasquill and Slade dispersion coefficients. The ANN-derived dispersion coefficients provided better predictions of measured puff concentration distributions than either the Pasquill or Slade parameterizations, though the full multi-input ANN models provided even better predictions than the Gaussian puff model using ANN-derived dispersion coefficients.
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November 2013
Research Article|
November 01 2013
Modelling aerosol concentration distributions from transient (puff) sources
Timothy J. DeVito;
Timothy J. DeVito
Department of Chemistry and Chemical Engineering, Royal Military College of Canada, Kingston, ON K7K 7B4, Canada
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Xiaoying Cao;
Xiaoying Cao
Department of Chemistry and Chemical Engineering, Royal Military College of Canada, Kingston, ON K7K 7B4, Canada
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Gilles Roy;
Gilles Roy
Defense Research and Development Canada Valcartier, Val-Belair, QC G3J 1X5, Canada
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Johnathan R. Costa;
Johnathan R. Costa
Department of Chemistry and Chemical Engineering, Royal Military College of Canada, Kingston, ON K7K 7B4, Canada
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William S. Andrews
William S. Andrews
Department of Chemistry and Chemical Engineering, Royal Military College of Canada, Kingston, ON K7K 7B4, Canada
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Publisher: Emerald Publishing
Received:
February 01 2008
Accepted:
November 01 2008
Online ISSN: 1496-256X
Print ISSN: 1496-2551
This paper is being republished with the permission of NRC Research Press. It was originally submitted to the Journal of Environmental Engineering and Science and subsequently published in the Canadian Journal of Civil Engineering. The correct citation follows: DeVito TJ, Cao X, Roy G, Costa JR, Andrews WS. 2009. Modelling aerosol concentration distributions from transient (puff) sources. Canadian Journal of Civil Engineering 36(5): 911–922 DOI: 10.1139/S08-055
ICE Publishing: All rights reserved
2013
Journal of Environmental Engineering and Science (2013) 8 (2): 255–266.
Article history
Received:
February 01 2008
Accepted:
November 01 2008
Citation
DeVito TJ, Cao X, Roy G, Costa JR, Andrews WS (2013), "Modelling aerosol concentration distributions from transient (puff) sources". Journal of Environmental Engineering and Science, Vol. 8 No. 2 pp. 255–266, doi: https://doi.org/10.1680/jees.2013.0027
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