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dc.contributor.authorRastigejev, Y.
dc.contributor.authorBrenner, Michael P.
dc.contributor.authorJacob, Daniel J.
dc.date.accessioned2011-02-14T14:53:00Z
dc.date.issued2007
dc.identifier.citationRastigeyev, Y., Michael P. Brenner, and Daniel J. Jacob. 2007. Spatial reduction algorithm for atmospheric chemical transport models. Proceedings of the National Academy of Sciences 104(35): 13875-13880.en_US
dc.identifier.issn0027-8424en_US
dc.identifier.urihttp://nrs.harvard.edu/urn-3:HUL.InstRepos:4724833
dc.description.abstractNumerical modeling of global atmospheric chemical dynamics presents an enormous challenge, associated with simulating hundreds of chemical species with time scales varying from milliseconds to years. Here we present an algorithm that provides a significant reduction in computational cost. Because most of the fast reactants and their quickly decomposing reaction products are localized near emission sources, we use a series of reduced chemical models of decreasing complexity with increasing distance from the source. The algorithm diagnoses the chemical dynamics on-the-run, locally and separately for every species according to its characteristic reaction time. Unlike conventional time-scale separation methods, the spatial reduction algorithm speeds up not only the chemical solver but also advection–diffusion integration. Through several examples we demonstrate that the algorithm can reduce computational cost by at least an order of magnitude for typical atmospheric chemical kinetic mechanisms.en_US
dc.description.sponsorshipEngineering and Applied Sciencesen_US
dc.language.isoen_USen_US
dc.publisherNational Academy of Sciencesen_US
dc.relation.isversionofdoi:10.1073/pnas.0705649104en_US
dc.relation.hasversionhttp://www.ncbi.nlm.nih.gov/pmc/articles/PMC1955770/en_US
dash.licenseLAA
dc.titleSpatial Reduction Algorithm for Atmospheric Chemical Transport Modelsen_US
dc.typeJournal Articleen_US
dc.description.versionVersion of Recorden_US
dc.relation.journalProceedings- National Academy of Sciences Usaen_US
dash.depositing.authorJacob, Daniel J.
dc.date.available2014-10-22T07:30:41Z
dc.identifier.doi10.1073/pnas.0705649104*
workflow.legacycommentsBrightening on 10/21/2014, per new OSC interpretation of PNAS policy.
dash.authorsorderedfalse
dash.contributor.affiliatedBrenner, Michael
dash.contributor.affiliatedJacob, Daniel


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