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.
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
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\by A.~I.~Sukhinov, D.~S.~Khachunts, A.~E.~Chistyakov
\paper A mathematical model of pollutant propagation in near-ground atmospheric layer of a coastal region and its software implementation
\jour Zh. Vychisl. Mat. Mat. Fiz.
\yr 2015
\vol 55
\issue 7
\pages 1238--1254
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\crossref{https://doi.org/10.7868/S0044466915070121}
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\jour Comput. Math. Math. Phys.
\yr 2015
\vol 55
\issue 7
\pages 1216--1231
\crossref{https://doi.org/10.1134/S096554251507012X}
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Linking options:
https://www.mathnet.ru/eng/zvmmf10240
https://www.mathnet.ru/eng/zvmmf/v55/i7/p1238
This publication is cited in the following 31 articles:
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T V Lyashchenko, I A Lyapunova, A E Chistyakov, A V Nikitina, A A Filina, A L Leontiev, “Modelling the pollutants transport in the “air-water” system of a shallow water”, IOP Conf. Ser.: Mater. Sci. Eng., 1029:1 (2021), 012080
A M Atayan, “Solving the diffusion-convection problem using MPI parallel computing technology”, J. Phys.: Conf. Ser., 1902:1 (2021), 012098
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A E Chistyakov, A V Strazhko, A M Atayan, S V Protsenko, “Software development for calculating the polluted by suspension and other impurities zones volumes on the basis of graphics accelerator”, IOP Conf. Ser.: Mater. Sci. Eng., 1029:1 (2021), 012084
A. I. Sukhinov, A. E. Chistyakov, E. A. Protsenko, A. M. Atayan, “Lineinaya kombinatsiya skhem «kabare» i «krest» s vesovymi koeffitsientami, poluchennymi iz usloviya minimizatsii poryadka pogreshnosti approksimatsii”, Chebyshevskii sb., 21:4 (2020), 243–256
V S. Protsenko, “Simulation of wave impact on shore protection structures using 3D model of wave processes”, Applied Mathematics, Computational Science and Mechanics: Current Problems, Journal of Physics Conference Series, 1479, IOP Publishing Ltd, 2020, 012078
A. Chistyakov, A. Nikitina, Yu. Belova, V. Litvinov, A. Filina, “Mathematical modeling of the hydrodynamic processes of shallow water taking into account the processes of salt and heat transfer”, 2020 VI International Conference on Information Technology and Nanotechnology, IEEE ITNT-2020, ed. D. Kudryashov, IEEE, 2020
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A Sukhinov, A Chistyakov, S Protsenko, E Protsenko, V. Breskich, A. Zheltenkov, Y. Dreizis, “Study of 3D discrete hydrodynamics models using cell filling”, E3S Web Conf., 224 (2020), 02016
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A. I. Sukhinov, A. E. Chistyakov, S. V. Protsenko, V. V. Sidoryakina, “Coupled 3D wave and 2D bottom deposit transportation models for the prediction of harmful phenomena in coastal zone”, Trends in the Analysis and Design of Marine Structures, Proceedings in Marine Technology and Ocean Engineering, 2, ed. J. Parunov, C. Soares, Crc Press-Balkema, 2019, 597–603