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Review of Oleg Viktorovich Kopelevich’s Works on Ocean Optics

https://doi.org/10.59887/fpg/vkp2-4p21-rtbh

Abstract

The article is dedicated to the memory of Oleg Viktorovich Kopelevich, Doctor of Physical and Mathematical Sciences, who has been conducting research in the field of ocean optics for more than 50 years and has been the head of the Ocean Optics Laboratory of the Shirshov Institute of Oceanology for more than 30 years. The paper presents the main results obtained by Dr. Kopele￾vich in different sections of ocean optics. At the first stage of his scientific activity, he was engaged in the study of light scattering in seawater. He identified four types of seawater scattering phase functions based on the results obtained in ocean expeditions. Subsequently, Dr. Kopelevich developed a low-parameter model of the seawater inherent optical properties. Since the late 1970s, an important place in his work has been the development of satellite methods for studying the ocean, in particular, the creation and improvement of regional bio-optical algorithms. The use of these algorithms for the waters of the Russian seas became the basis for the creation of the Atlas of their bio-optical characteristics, published regularly since 2002. The results of the use of regional algorithms were summed up in a collective monograph published in 2018. In addition, O.V. Kopelevich contributed to the study of light fields and the factors affecting them — cloud cover and mass phytoplankton blooms.

About the Authors

D. I. Glukhovets
Shirshov Institute of Oceanology, Russian Academy of Sciences; Moscow Institute of Physics and Technology
Russian Federation

117997, Nahimovsky Pr., 36, Moscow

141701, Institutskiy lane, 9, Moscow region



Yu. A. Goldin
Shirshov Institute of Oceanology, Russian Academy of Sciences
Russian Federation

 117997, Nahimovsky Pr., 36, Moscow



References

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11. Kopelevich O.V., Saling I.V., Vazyulya S.V., Glukhovets D.I., Sheberstov S.V., Burenkov V.I., Karalli P.G., Yushmanova A.V. Biooptical characteristics of the seas washing the shores of the western half of Russia, according to satellite color scanners 1998–2017 / Ed. Managing editor Dr. O.V. Kopelevich. Moscow, Shirshov Institute of Oceanology, 2018. 140 p. URL: https://optics.ocean.ru/Atlas_2019/8_Monography_2018.pdf (In Russian) (Access date: 15.01.2022).

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13. Artem’iev V.A., Burenkov V.I., Vortman M.I., Grigoriev A.V., Kopelevich O.V., Khrapko A.N. Sub-truth measurements of ocean color: a new floating spectroradiometer and its metrology. Oceanology. 2000, 40, 1, 139–145 (in Russian).

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16. Sheberstov S.V., Kopelevich O.V., Lukyanova E.A. Analysis of inter-annual trends of sea surface temperature and chlorophyll concentration in the Atlantic Ocean from satellite data. Sovremennye Problemy Distantsionnogo Zondirovaniya Zemli iz Kosmosa. 2011, 8, 4, 274 (in Russian).

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19. Ershova S.V., Kopelevich O.V., Sheberstov S.V., Burenkov V.I., Khrapko A.N. A method for estimating the penetration of solar visual and ultraviolet radiation into the waters of the Arctic seas using satellite data: the case of a cloudless atmosphere. Oceanology. 2001, 41, 3, 317–325.

20. Ershova S.V., Kopelevich O.V., Sheberstov S.V. A method for estimating the penetration of solar radiation into the waters of the Arctic seas based on satellite data: the case of a totally overcast sky. Oceanology. 2002, 42, 1, 17–26.

21. Kopelevich O.V., Burenkov V.I., Vazyulya S.V., Sheberstov S.V., Nabiullina M.V. An assessment of the photosynethetically active radiance balance in the Barents Sea from the data of the SeaWiFS satellite color scanner. Oceanology. 2003, 43, 6, 786–796.

22. Kopelevich O.V., Vazyulya S.V., Grigoriev A.V., Khrapko A.N., Sheberstov S.V., Sahling I.V. Penetration of visible solar radiation in waters of the Barents Sea depending on cloudiness and coccolithophore blooms. Oceanology. 2017, 57, 3, 402–409. doi:10.1134/S0001437017020096


Review

For citations:


Glukhovets D.I., Goldin Yu.A. Review of Oleg Viktorovich Kopelevich’s Works on Ocean Optics. Fundamental and Applied Hydrophysics. 2022;15(3):9-17. (In Russ.) https://doi.org/10.59887/fpg/vkp2-4p21-rtbh

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