Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin

The paper presents the transport module of the System for Integrated modeLling of Atmospheric coMposition SILAM v.5 based on the advection algorithm of Michael Galperin. This advection routine, so far weakly presented in the international literature, is positively defined, stable at any Courant numb...

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Main Authors: M. Sofiev, J. Vira, R. Kouznetsov, M. Prank, J. Soares, E. Genikhovich
Format: Article
Language:English
Published: Copernicus Publications 2015-11-01
Series:Geoscientific Model Development
Online Access:http://www.geosci-model-dev.net/8/3497/2015/gmd-8-3497-2015.pdf
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spelling doaj-74c060995a7e4734bcec184a877493212020-11-25T01:01:42ZengCopernicus PublicationsGeoscientific Model Development1991-959X1991-96032015-11-018113497352210.5194/gmd-8-3497-2015Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael GalperinM. Sofiev0J. Vira1R. Kouznetsov2M. Prank3J. Soares4E. Genikhovich5Finnish Meteorological Institute, Helsinki, FinlandFinnish Meteorological Institute, Helsinki, FinlandFinnish Meteorological Institute, Helsinki, FinlandFinnish Meteorological Institute, Helsinki, FinlandFinnish Meteorological Institute, Helsinki, FinlandMain Geophysical Observatory, St. Petersburg, RussiaThe paper presents the transport module of the System for Integrated modeLling of Atmospheric coMposition SILAM v.5 based on the advection algorithm of Michael Galperin. This advection routine, so far weakly presented in the international literature, is positively defined, stable at any Courant number, and efficient computationally. We present the rigorous description of its original version, along with several updates that improve its monotonicity and shape preservation, allowing for applications to long-living species in conditions of complex atmospheric flows. The scheme is connected with other parts of the model in a way that preserves the sub-grid mass distribution information that is a cornerstone of the advection algorithm. The other parts include the previously developed vertical diffusion algorithm combined with dry deposition, a meteorological pre-processor, and chemical transformation modules. <br><br> The quality of the advection routine is evaluated using a large set of tests. The original approach has been previously compared with several classic algorithms widely used in operational dispersion models. The basic tests were repeated for the updated scheme and extended with real-wind simulations and demanding global 2-D tests recently suggested in the literature, which allowed one to position the scheme with regard to sophisticated state-of-the-art approaches. The advection scheme performance was fully comparable with other algorithms, with a modest computational cost. <br><br> This work was the last project of Dr. Sci. Michael Galperin, who passed away on 18 March 2008.http://www.geosci-model-dev.net/8/3497/2015/gmd-8-3497-2015.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Sofiev
J. Vira
R. Kouznetsov
M. Prank
J. Soares
E. Genikhovich
spellingShingle M. Sofiev
J. Vira
R. Kouznetsov
M. Prank
J. Soares
E. Genikhovich
Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin
Geoscientific Model Development
author_facet M. Sofiev
J. Vira
R. Kouznetsov
M. Prank
J. Soares
E. Genikhovich
author_sort M. Sofiev
title Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin
title_short Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin
title_full Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin
title_fullStr Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin
title_full_unstemmed Construction of the SILAM Eulerian atmospheric dispersion model based on the advection algorithm of Michael Galperin
title_sort construction of the silam eulerian atmospheric dispersion model based on the advection algorithm of michael galperin
publisher Copernicus Publications
series Geoscientific Model Development
issn 1991-959X
1991-9603
publishDate 2015-11-01
description The paper presents the transport module of the System for Integrated modeLling of Atmospheric coMposition SILAM v.5 based on the advection algorithm of Michael Galperin. This advection routine, so far weakly presented in the international literature, is positively defined, stable at any Courant number, and efficient computationally. We present the rigorous description of its original version, along with several updates that improve its monotonicity and shape preservation, allowing for applications to long-living species in conditions of complex atmospheric flows. The scheme is connected with other parts of the model in a way that preserves the sub-grid mass distribution information that is a cornerstone of the advection algorithm. The other parts include the previously developed vertical diffusion algorithm combined with dry deposition, a meteorological pre-processor, and chemical transformation modules. <br><br> The quality of the advection routine is evaluated using a large set of tests. The original approach has been previously compared with several classic algorithms widely used in operational dispersion models. The basic tests were repeated for the updated scheme and extended with real-wind simulations and demanding global 2-D tests recently suggested in the literature, which allowed one to position the scheme with regard to sophisticated state-of-the-art approaches. The advection scheme performance was fully comparable with other algorithms, with a modest computational cost. <br><br> This work was the last project of Dr. Sci. Michael Galperin, who passed away on 18 March 2008.
url http://www.geosci-model-dev.net/8/3497/2015/gmd-8-3497-2015.pdf
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