Труды КНЦ (Естественные и гуманитарные науки вып.3/2025(4))
9. Shcherbatyuk A. P. Kontseptsiya obespecheniya ekologicheskoi bezopasnosti vozdushnoi sredy gorodov v prirodno- tekhnicheskikh sistemakh gorno-kotlovinnogo tipa [The concept of ensuring the ecological safety of the urban air environment in natural-technical systems of the mountain-basin type]. Teoreticheskaya i prikladnaya ekologiya [Theoretical and applied ecology], 2019, no. 4, p. 24-30. doi:10.25750/1995-4301-2019-4-024-030. (In Russ.). 10. Zakarin E. A., Baklanov A. A., Balakay L. A., Dedova T., Bostanbekov K. Simulation of Air Pollution in Almaty City under Adverse Weather Conditions. Russ. Meteorol. Hydrol., 2021, Vol. 46, no. 2, рp. 121-128. https://doi.org/10.3103/S1068373921020072. 11. Zakarin E., Baklanov A., Balakay L., Dedova T., Bostanbekov K. Modeling of the Calm Situations in the Atmosphere of Almaty. Asian Journal of Atmospheric Environment, 2022, Vol. 16 (2). https://doi.org/10.5572/ajae.2022.007. 12. Mammadova Sh. Assessment of Pollution of the Atmospheric Air in the Cities of Azerbaijan. International Journal of Humanities and Social Science, 2013, Vol. 3, no. 18, рp. 128-136. 13. Buke T., Kone A.C. Assessing Air Quality in Turkey: A Proposed, Air Quality Index. Sustainability, 2016, no. 8, рр. 73. doi:10.3390/su8010073. 14. Lyu Ch. Sostoyanie prirodnoi sredy i ekologicheskaya politika Kitaya [The state of the natural environment and environmental policy of China]. 2014. (In Russ.). Available at: https://cyberleninka.ru/article/n7sostoyanie- prirodnoy-sredy-i-ekologicheskaya-politika-kitaya (accessеd 30.10.2023). 15. Bei N., Li G., Huang R.-J., Cao J., Meng N., Feng T., Liu S., Zhang T., Qiang Zh., Molina L. T. Typical synoptic situations and their impacts on the wintertime air pollution in the Guanzhong basin, China. Atmos. Chem. Phys., 2016, Vol. 16, рp. 7373-7387. doi:10.5194/acp-16-7373-2016. 16. The National report on the State of the Environment of the Kyrgyz republic for 2006-2011. Bishkek, 2012, 126 p. 17. Apostol L., Ilie N. Thermal hazards in cold semester of the year in the mountain area of Moldova river (sector between Vama and the Springs of Moldova river). Present Environment and Sustainable Development, 2015, Vol. 9, no. 1, p. 251-261. doi:10.1515/pesd-2015-0019. 18. Sorokina O. I., Kosheleva N. E., Kasimov N. S., Golovanov D. L., Bazha S. N., Dorzhgotov D., Enkh-Amgalan S. Heavy metals in the air in the snow cover of Ulaanbaatar city. Geography and Natural Resources, 2013, Vol. 34, no. 3, рp. 291-301. 19. Arguchintseva A. V., Vologzhina S. Zh. Zagryaznenie atmosfernogo vozdukha Baikal'skoi kotloviny [Atmospheric air pollution of the Baikal basin], Izvestiya Irkutskogo gosudarstvennogo universiteta, Seriya “Nauki o Zemle” [Proceedings of Irkutsk State University. Series “Earth Sciences”], 2011, Vol. 4, no. 2, рp. 28-41. (In Russ.). 20. Granberg I. G. Fizicheskie mekhanizmy i ekologicheskie problemy zagryazneniya atmosfernogo pogranichnogo sloya nad neodnorodnymi poverkhnostyami. Diss. dokt. fiz.-mat. nauk [Physical mechanisms and environmental problems of atmospheric boundary layer pollution over inhomogeneous surfaces. Dr. Sci. (Phys.-Math.) diss.]. Moscow, 2009, 57 p. 21. Granberg I. G. Numerical simulation of possible extreme events due to orography at Cyprus. Phys. Chem. Earth (B ), 1999, Vol. 24, no. 6, рp. 649-652. 22. Lezhenin A. A., Raputa V. F., Yaroslavtseva T. V. Chislennyi analiz atmosfernoi tsirkulyatsii i rasprostraneniya zagryaznyayushchikh primesei v okrestnostyakh Noril'skogo promyshlennogo raiona [Numerical analysis of atmospheric circulation and distribution of pollutants in the vicinity of the Norilsk industrial district]. Optika atmosfery i okeana [Optics of the atmosphere and ocean], 2005, Vol. 29, no. 6, рp. 467-471. (In Russ.). 23. Shlychkov V. A., Mal'bakhov V. M., Lezhenin A. A. Chislennoe modelirovanie atmosfernoi tsirkulyatsii i perenosa zagryaznyayushchikh primesei v Noril'skoi doline [Numerical simulation of atmospheric circulation and transport of pollutants in the Norilsk Valley]. Optika atmosfery i okeana [Optics of the atmosphere and ocean], 2005, Vol. 18, no. 5-6, рp. 490-496. (In Russ.). 24. Model inventory. Available at: https://mi-pub.cen.uni-hamburg.de/index.php?id=6295&no_cache=1 (accessеd 07.05.2022). 25. Kachurin N. М., Stas’ G. V., Levin А. D., Rybak V. L. Aerodinamika gornykh otvalov ugol’nykh shakht [Aerodynamics of coal mine dumps]. Izvestiya Tul’skogo gosudarstvennogo universiteta. Nauki o Zemle, [Proceedings of Tula State University. Earth Sciences], 2016, Iss. 1, рp. 23-33. (In Russ.). 26. Khazins V. M., Shuvalov V. V., Soloviev S. P. Numerical modeling of formation and rise of gas and dust cloud from large scale commercial blasting. Atmosphere, 2020, Vol. 11, Iss. 10, рр. 1112. https://doi.org/10.3390/atmos11101112. 27. Nuterman R. B., Baklanov A. A., Starchenko A. V. Modeling of aerodynamics and pollution dispersion from traffic in the urban sublayer. Mathematical Models and Computer Simulation, 2010, Vol. 2, Iss. 6, рр. 738-752. https://doi.org/10.1134/S2070048210060098. 28. Starchenko А. V., Nuterman R. B., Danilkin Е. А. Chislennoe modelirovanie turbulentnyhk techenii I perenosa primesi v ulichnykh kan ’onakh [Numerical simulation of turbulent flows and impurity transport in street canyons]. Tomsk, Tomsk University Publ., 2015, 252 p. Труды Кольского научного центра РАН. Серия: Естественные и гуманитарные науки. 2025. Т. 4, № 3. С. 14-32. Transactions of the Kola Science Centre of RAS. Series: Natural Sciences and Humanities. 2025. Vol. 4, No. 3. P. 14-32. © Амосов П. В., Бакланов А. А., 2025 30
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