Cellular automata model application for investigation of pollution influence on population dynamics of comephorus and macrohectopus in Lake Baikal
Prikladnaâ diskretnaâ matematika, no. 1 (2014), pp. 114-123.

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Cellular automata model was modified in order to take into account birthrates seasonal dependency and influence of water streams on movement of organisms. The model was verified within production-to-biomass and relative average quantity criteria and was used for investigation of pollution influence on population dynamic. Estimates of minimal pollution that leads to total death of organisms and of maximum pollution which influence is not observable within natural population dynamics are presented.
Keywords: self-organization, cellular automata, population dynamic model, prey–predator system.
Mots-clés : composition
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I. V. Afanasyev. Cellular automata model application for investigation of pollution influence on population dynamics of comephorus and macrohectopus in Lake Baikal. Prikladnaâ diskretnaâ matematika, no. 1 (2014), pp. 114-123. http://geodesic.mathdoc.fr/item/PDM_2014_1_a12/

[1] Svirezhev Yu. M., Logofet D. O., Ustoichivost biologicheskikh soobschestv, Nauka, M., 1978, 352 pp. | MR

[2] Bazykin A. D., Nelineinaya dinamika vzaimodeistvuyuschikh populyatsii, IKI, Izhevsk, 2003, 368 pp.

[3] Zorkaltsev V. I., Kazazaeva A. V., Mokryi I. V, “Model vzaimodeistviya trekh pelagicheskikh vidov organizmov ozera Baikal”, Sovremennye tekhnologii. Sistemnyi analiz. Modelirovanie, 2008, no. 1, 182–193

[4] Afanasev I. V., “Kletochno-avtomatnaya model dinamiki chislennosti organizmov ozera Baikal”, Prikladnaya diskretnaya matematika, 2012, no. 1, 121–132

[5] Bandman O. L., “Cellular automata composition techniques for spatial dynamics simulation”, Simulating Complex Systems by Cellular Automata. Understanding complex Systems, eds. A. G. Hoekstra et al., Berlin, 2010, 81–115 | DOI | Zbl

[6] Bandman O. L., “Kletochno-avtomatnye modeli prostranstvennoi dinamiki”, Sistemnaya informatika, 2006, no. 10, 58–113

[7] Medvedev Y. G., “Multi-particle cellular automata models for diffusion simulation”, Meth. Tools Parall. Program. Multicomp., 6083 (2011), 204–211 | DOI

[8] Mazepova G. F., Timoshkin O. A., Melnik N. G. i dr., Atlas i opredelitel pelagobiontov Baikala, Nauka, Novosibirsk, 1995, 693 pp.

[9] Starikov G. V., Golomyanki Baikala, Nauka, Novosibirsk, 1977, 94 pp.