Mathematical modeling of pollutants dispersion
News of the Kabardin-Balkar scientific center of RAS, no. 6 (2014), pp. 23-31.

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The paper presents the results of air movement mathematical modeling in urban areas with the equal houses height and a different number of streets. It is shown that the horizontal size of urban canopy has a significant influence on the flow pattern of air and the distribution of the pollutants.
Keywords: mathematical modeling, aerodynamics, urban canopy.
Mots-clés : air pollution
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E. S. Kamenetskiǐ; M. V. Volik; A. M. Tagirov. Mathematical modeling of pollutants dispersion. News of the Kabardin-Balkar scientific center of RAS, no. 6 (2014), pp. 23-31. http://geodesic.mathdoc.fr/item/IZKAB_2014_6_a2/

[1] V. T. Kalugin, A. Yu. Lutsenko, A. A. Michkin, S. V. Strizhak, “Opyt ispolzovaniya SPO pri podgotovke studentov, obuchayuschikhsya po spetsialnosti «Gidroaerodinamika»”, Vserossiiskaya konferentsiya «Svobodnoe programmnoe obespechenie-2010, (SPO-2010)», Sankt-Peterburg (26-27 oktyabrya 2010 goda) http://www.raspo.ru/spo2010/docs/tezisi/43kalugin_tez.pdf

[2] M. V. Kraposhin, O. I. Samovarov, S. V. Strizhak, “Paket OpenFoam: chislennoe modelirovanie zadach MSS”, Materialy shkoly-seminara «Osnovy ispolzovaniya OpenFoam, Salome, ParaView» (data obrascheniya 17.07.2014 g.) https://unihub.ru/tools/unicfdc1/svn/trunk/Version2/Pdf/day1_2_4-OpenFOAM-Base.pdf

[3] A. V. Garbaruk, “Modeli s dvumya uravneniyami dlya kineticheskoi energii turbulentnosti k i dissipatsii”, Kurs lektsii «Modeli turbulentnosti» (data obrascheniya 17.07.2014 g.) http://agarbaruk.professorjournal.ru/c/document_library/get_file?p_l_id=1040098&folderId=104 2870&name=DLFE-50826.pdf

[4] Standard k-epsilon model (data obrascheniya 17.07.2014 g.) www.cfd-online.com/Wiki/Standard_k-epsilon_model

[5] OpenFOAM. User Guide (data obrascheniya 17.07.2014 g.) http://www.openfoam.org/docs/user/cavity.php#x5- 320002.1.8