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Zh. Vychisl. Mat. Mat. Fiz., 2015, Volume 55, Number 7, Pages 1238–1254 (Mi zvmmf10240)  

This article is cited in 5 scientific papers (total in 5 papers)

A mathematical model of pollutant propagation in near-ground atmospheric layer of a coastal region and its software implementation

A. I. Sukhinov, D. S. Khachunts, A. E. Chistyakov

Engineering and Technological Academy of the Southern Federal University, Nekrasovskii per. 44, Taganrog, 347928, Russia

Abstract: Mathematical modeling of pollutant propagation in the air of coastal regions is considered. A new mathematical model of aerodynamic processes is proposed that takes into account a multitude of factors acting in coastal regions, such as high air humidity, variability of the air pressure and temperature, etc. Algorithms for the investigation of this model are developed and their software implementation is described.

Key words: fluid dynamics, multicomponent medium, distributed source, numerical simulation, conservative difference schemes.

DOI: https://doi.org/10.7868/S0044466915070121

Full text: PDF file (1714 kB)
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English version:
Computational Mathematics and Mathematical Physics, 2015, 55:7, 1216–1231

Bibliographic databases:

UDC: 519.634
Received: 24.10.2014
Revised: 01.12.2014

Citation: A. I. Sukhinov, D. S. Khachunts, A. E. Chistyakov, “A mathematical model of pollutant propagation in near-ground atmospheric layer of a coastal region and its software implementation”, Zh. Vychisl. Mat. Mat. Fiz., 55:7 (2015), 1238–1254; Comput. Math. Math. Phys., 55:7 (2015), 1216–1231

Citation in format AMSBIB
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    Citing articles on Google Scholar: Russian citations, English citations
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    This publication is cited in the following articles:
    1. A. Chistyakov, A. Nikitina, E. Protsenko, “The calculation problem of thermodynamic processes in a steam turbine”, International Scientific-Technical Conference Dynamic of Technical Systems, DTS 2017, MATEC Web of Conferences, 132, eds. T. Najafabadi, I. Sevostianov, K. Yeghiazaryan, A. Dong, V. Mladenovic, EDP Sciences, 2017, UNSP 04020  crossref  isi
    2. S. Protsenko, T. Sukhinova, “Mathematical modeling of wave processes and transport of bottom materials in coastal water areas taking into account coastal structures”, International Scientific-Technical Conference Dynamic of Technical Systems, DTS 2017, MATEC Web of Conferences, 132, eds. T. Najafabadi, I. Sevostianov, K. Yeghiazaryan, A. Dong, V. Mladenovic, EDP Sciences, 2017, UNSP 04002  crossref  isi
    3. A. Semenyakina, S. Protsenko, “Complex of parallel programs for modeling oil products transport in coastal systems”, International Scientific-Technical Conference Dynamic of Technical Systems, DTS 2017, MATEC Web of Conferences, 132, ed. T. Najafabadi, I. Sevostianov, K. Yeghiazaryan, A. Dong, V. Mladenovic, EDP Sciences, 2017, UNSP 04016  crossref  isi
    4. A. Sukhinov, A. Nikitina, Yu. Belova, T. Bednaya, “Ecological and hydrophysical research of impact the vertical turbulent exchange coefficient on the concentration of dissolved oxygen in the bottom layer of shallow water”, International Scientific-Technical Conference Dynamic of Technical Systems, DTS 2017, MATEC Web of Conferences, 132, ed. T. Najafabadi, I. Sevostianov, K. Yeghiazaryan, A. Dong, V. Mladenovic, EDP Sciences, 2017, UNSP 04018  crossref  mathscinet  isi
    5. Kruschwitz J., Lind M., Muntean A., Richardson O., Wondmagegne Y., “Modelling, Simulation and Parameter Identification of Active Pollution Reduction With Photocatalytic Asphalt”, Acta Polytech., 59:1 (2019), 51–58  crossref  isi  scopus
  • Журнал вычислительной математики и математической физики Computational Mathematics and Mathematical Physics
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