M. S. Malkevich, Yu. S. Georgievskiy, A. I. Chavro, and A. Kh. Shukurov, “Statistical characteristics of the spectral structure of radiation attenuation in the surface air layer,” Izv. Akad Nauk SSSR. Phys. Atmos. Okeana 13 (12), 1257–1267 (1977).
G. I. Gorchakov and M. A. Sviridenkov, “Statistical model of optical characteristics of atmospheric haze,” Izv. Akad Nauk SSSR. Phys. Atmos. Okeana 15 (1), 53 (1979).
B. Nilsson, “Meteorological influence on aerosol extinction in the 0.2–40 μm wavelength range,” Appl. Opt. 18 (20), 3457–3473 (1979).https://doi.org/10.1364/AO.18.003457
G. I. Gorchakov, A. S. Emilenko, and M. A. Sviridenkov, “One-parameter surface aerosol model,” Izv. Akad Nauk SSSR. Phys. Atmos. Okeana 17 (1), 39–49 (1981).
K. Ya. Kondratiev and D. V. Pozdnyakov, Aerosol Models of the Atmosphere (Gidrometeoizdat, Leningrad, 1981) [in Russian].
M. Hess, P. Koepke, and I. Schult, “Optical properties of aerosols and clouds: The software package OPAC,” Bull. Am. Meteorol. Soc. 79 (5), 831–844 (1998). https://doi.org/10.1175/1520-0477(1998)079<0831:O-POAAC>2.0.CO;2
A. V. Karpov, G. I. Gorchakov, R. A. Gushchin, and O. I. Datsenko, “Vertical turbulent dust-aerosol fluxes,” Izv., Atmos. Ocean. Phys. 57 (5), 495–503 (2021). https://doi.org/10.1134/S000143382105008X
S. Kato, T. J. Thorsen, S.-H. Ham, N. G. Loeb, R. A. Ferrare, D. M. Winker, H. Barker, G. L. Stephens, S. Schmidt, K. G. Meyer, and B. Cairns, “Effect of spectral variability of aerosol optical properties on direct aerosol radiative effect,” Front. Remote Sens. 3, 904505 (2022). https://doi.org/10.3389/frsen.2022.904505
D. P. Gubanova, A. A. Vinogradova, E. A. Lezina, M. A. Iordanskii, and A. A. Isakov, “Conditionally background level of aerosol pollution of near-surface air in Moscow and one of its suburbs: Seasonal variations,” Izv., Atmos. Ocean. Phys. 59 (6), 754–773 (2023). https://doi.org/10.31857/S00023515230600566
G. I. Gorchakov, O. G. Chkhetiani, A. V. Karpov, R. A. Gushchin, and O. I. Datsenko, “Turbulent fluxes of aerosol and heat in a desertified area during intermittent emission of dust aerosol,” Dokl. Earth Sci. 515 (1), 124–131 (2024). https://doi.org/10.31857/S2686739724030154
A. A. Vinogradova, D. P. Gubanova, and V. M. Kopeykin, “Variability of black carbon and aerosols PM10 and PM2.5 in the near-surface air of the megalopolis,” Izv., Atmos. Ocean. Phys. 60 (3), 320–334 (2024). https://doi.org/10.31857/S0002351524030054
I. Y. Vozmishchev, A. V. Betin, A. A. Pechkovskaya, and A. I. Gnatyuk, “Estimation of the optical transparency coefficient of the atmosphere on inclined and vertical routes based on measurements of meteorological visibility range on surface routes,” in Scientific and Technical Conference of St. Petersburg Scientific and Technical Association of Russian Electronic Networks named after A.S. Popov dedicated to the Radio Day (St. Petersburg Electrotechnical University “LETI”, St. Petersburg, 2024), pp. 32–35 [in Russian].
G. I. Gorchakov, O. I. Datsenko, A. V. Karpov, and R. A. Gushchin, “Selective absorption in the visible spectrum of dust haze over Middle East in spring 2022,” Dokl. Ross. Acad. Nauk. Nauki Zemle 521 (1), 116–122 (2025). https://doi.org/10.1134/S1028334X2460525X
N. N. Shchelkanov and Yu. A. Pkhalagov, “Two-parameterical model of aerosol extinction in the wavelength range 0.4–12 μm,” Proc. SPIE 3983, 32–35 (1999). https://doi.org/10.1117/12.370517
M. V. Panchenko, T. B. Zhuravleva, S. A. Terpugova, V. V. Polkin, and V. S. Kozlov, “An empirical model of optical and radiative characteristics of the tropospheric aerosol over West Siberia in summer,” Atmos. Meas. Tech. 5 (7), 1513–1527 (2012). https://doi.org/10.5194/amt-5-1513-2012
N. N. Shchelkanov and Yu. A. Pkhalagov, “One-parameter seasonal models of aerosol extinction for the near-ground layer of the atmosphere in arid zone,” Proc. SPIE 9292, 92923U (2014). https://doi.org/10.1117/12.2074821
M. V. Panchenko, V. S. Kozlov, V. V. Polkin, Vas. V. Polkin, S. A. Terpugova, V. N. Uzhegov, D. G. Chernov, V. P. Shmargunov, E. P. Yausheva, and P. N. Zenkova, “Aerosol characteristics in the near-ground layer of the atmosphere of the city of Tomsk in different types of aerosol weather,” Atmosphere 11 (1), 20–39 (2020). https://doi.org/10.3390/atmos11010020
M. V. Panchenko, V. V. Pol’kin, Vas. V. Pol’kin, V. S. Kozlov, E. P. Yausheva, and V. P. Shmargunov, “The size distribution of the “dry matter” of particles in the surface air layer in suburbs of Tomsk within the empirical classification of “aerosol weather” types,” Atmos. Ocean. Opt. 32 (6), 655–662 (2019). https://doi.org/10.1134/S1024856019060113
M. V. Panchenko, M. V. Kabanov, Yu. A. Pkhalagov, B. D. Belan, V. S. Kozlov, S. M. Sakerin, D. M. Kabanov, V. N. Uzhegov, N. N. Shchelkanov, V. V. Polkin, S. A. Terpugova, G. N. Tolmachev, E. P. Yausheva, M. Yu. Arshinov, D. V. Simonenkov, V. P. Shmargunov, D. G. Chernov, Yu. S. Turchinovich, Vas. V. Pol’kin, T. B. Zhuravleva, I. M. Nasrtdinov, and P. N. Zenkova, “Integrated studies of tropospheric aerosol at the Institute of Atmospheric Optics (development stages),” Atmos. Ocean. Opt. 33 (1), 27–41 (2020). https://doi.org/10.1134/S1024856020010108
P. N. Zenkova, S. A. Terpugova, V. V. Pol’kin, Vas. V. Pol’kin, V. N. Uzhegov, V. S. Kozlov, E. P. Yausheva, and M. V. Panchenko, “Development of an empirical model of optical characteristics of aerosol in Western Siberia,” Atmos. Ocean. Opt. 34 (4), 320–326 (2021). https://doi.org/10.1134/S1024856021040151
V. L. Filippov, A. S. Makarov, and V. P. Ivanov, “Regional semi-empirical modeling of optical characteristics of the atmosphere,” Dokl. Acad. Nauk SSSR 265 (6), 1353–1356 (1982).
Yu. A. Pkhalagov, V. N. Uzhegov, and N. N. Shchelkanov, “The spectral structure of aerosol extinction coefficients in the ground layer of the atmosphere in arid zone,” J. Aerosol. Sci. 26 (S1), 363–364 (1995). https://doi.org/10.1016/0021-8502(95)97089-W
Yu. A. Pkhalagov, V. N. Uzhegov, and N. N. Shchelkanov, “Aerosol extinction of optical radiation in the atmosphere of arid zone,” Atmos. Ocean. Opt. 7 (10), 714–720 (1994).
A. N. Zaidel, Errors in Measurements of Physical Quantities (Nauka, Leningrad, 1985) [in Russian].
V. E. Zuev and M. V. Kabanov, Transfer of Optical Signals in the Earth’s Atmosphere (under Interference Conditions) (Sovetskoe radio, Moscow, 1977) [in Russian].
R. F. Rakhimov, V. N. Uzhegov, E. V. Makienko, and Yu. A. Pkhalagov, “Obtaining the most probable value of the aerosol extinction coefficient of atmospheric haze from long-term series of observations along a near-ground horizontal path,” Atmos. Ocean. Opt. 18 (7), 506–513 (2005).
V. N. Uzhegov, Yu. A. Pkhalagov, and N. N. Shchelkanov, “Investigation of optical radiation extinction by aerosol in winter,” Atmos. Ocean. Opt. 7 (8), 570–574 (1994).
M. V. Kabanov, M. V. Panchenko, Yu. A. Pkhalagov, V. V. Veretennikov, V. N. Uzhegov, and V. Ya. Fadeev, Optical Properties of Coastal Atmospheric Haze (Nauka, Novosibirsk, 1988) [in Russian].
V. L. Filippov, A. S. Makarov, and V. P. Ivanov, “Statistical characteristics of the attenuation of visible and IR radiation in the surface air layer,” Izv. Akad. Nauk SSSR. Phys. Atmos. Okeana. 15 (3), 257–265 (1979).
G. M. Krekov and R. F. Rakhimov, Optical-Ranging Model of Continental Aerosol (Nauka, Novosibirsk, 1982) [in Russian].
G. M. Krekov and S. G. Zvenigorodsky, Optical Model of the Middle Atmosphere (Nauka, Novosibirsk, 1990) [inRussian].
Comments (0)