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ISSN: 1023-5086

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ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 528.88

Space-based thermal vision in the solution of problems of ecological safety

For Russian citation (Opticheskii Zhurnal):

Тронин А.А., Шилин Б.В. Космическое тепловидение при решении задач экологической безопасности // Оптический журнал. 2015. Т. 82. № 7. С. 19–24.

 

Tronin A.A., Shilin B.V. Space-based thermal vision in the solution of problems of ecological safety [in Russian] // Opticheskii Zhurnal. 2015. V. 82. № 7. P. 19–24.

For citation (Journal of Optical Technology):

A. A. Tronin and B. V. Shilin, "Space-based thermal vision in the solution of problems of ecological safety," Journal of Optical Technology. 82(7), 411-415 (2015). https://doi.org/10.1364/JOT.82.000411

Abstract:

Space-based thermal vision is widely used to solve problems of ecological safety: the measurement of the surface temperature of water and dry land, the determination of the components of the thermal balance of terrestrial ecosystems, and the thermophysical properties of ecosystems (evaporation rate and thermal inertia). Ecological risk zones and sections of thermal contamination and high anthropogenic loading on the ecosystem have been mapped. Satellite thermal-vision systems are considered, and their technical characteristics are compared. Data-processing methods for purposes of ecological safety are analyzed. Examples are given of the use of the results of space-based thermal imaging for nature conservation and ecological safety. The role of space-based thermal vision in studying new threats to ecological safety is determined.

Keywords:

space-based thermal vision, ecosystem, ecological safety

Acknowledgements:

This paper used the data of the NEO (NASA Earth Observations) portal.

OCIS codes: 280.0280

References:

1. A. P. Cracknell, The Advanced Very High Resolution Radiometer (AVHRR) (Taylor & Francis, London, 1997).
2. A. S. Selivanov, M. K. Naraeva, B. I. Nosov, A. S. Panfilov, I. F. Sinel’nikova, and B. A. Suvorov, “Multizonal scanner with conical scanning for investigating natural resources,” Issled. Zemli iz Kosmosa No. 1, 66 (1985).
3. V. I. Gornyı˘, S. G. Kritsuk, I. Sh. Latypov, A. A. Tronin, and B. V. Shilin, “Estimating the heat losses of nuclear power stations from space-based thermal imaging data,” J. Opt. Technol. 66, 676 (1999) [Opt. Zh. 66, No. 8, 6 (1999)].
4. V. Yu. Efremov, O. A. Girina, L. S. Kramareva, E. A. Lupyan, A. G. Manevich, D. V. Mel’nikov, A. M. Matveev, A. A. Proshin, A. A. Sorokin, and E. V. Flitman, “The creation of the informational service ‘Remote monitoring of the activity of volcanoes of Kamchatka and Kuril’,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 9, No. 5, 155 (2012).
5. V. M. Sorokin, V. M. Chmyrev, and A. A. Tronin, Fundamentals of Aerospace Methods of Monitoring Earthquakes (Palmarium Academic, Saarbrucken, 2014).
6. V. I. Gornyı˘, S. G. Kritsuk, and I. Sh. Latypov, “Thermodynamic approach to remote mapping of the level of anthropogenic loading on the ecosystem,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 8, No. 2, 179 (2011).
7. V. I. Gornyı˘, S. G. Kritsuk, I. Sh. Latypov, and V. N. Khramtsov, “Verification of large-scale maps of the thermodynamic disturbance index of ecosystems,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 10, No. 4, 201 (2013).
8. A. A. Tronin, “Space methods in biohazard monitoring,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 2, No. 2, 318 (2005).

9. V. I. Gornyı˘, S. G. Kritsuk, I. Sh. Latypov, T. E. Teplyakova, and A. A. Tronin, “Measurement technology of satellite monitoring of the earth from space,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 5, No. 2, 469 (2008).
10. A. A. Tronin, N. K. Tokarevich, L. P. Antykova, T. E. Teplyakova, and S. G. Kritsuk, “Remote methods in studies of Ixodes ticks—vectors of natural focal infections,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 5, No. 2, 376 (2008).
11. D. V. Ershov, G. N. Korovin, E. A. Lupyan, A. A. Mazurov, and S. A. Tashchilin, “Russian system of satellite monitoring of forest fires,” Sovrem. Probl. Distants. Zondir. Zemli iz Kosmosa 1, No. 1, 47 (2004).