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Seasonal Distribution of the Radio Wave Refraction Index over the Territory of Buryatia

https://doi.org/10.25205/2541-9447-2021-16-2-5-13

Abstract

The values of the atmospheric refraction index N for ultra-short radio waves for the territory of Buryatia according to the data of meteorological stations were calculated. The monthly average values N contours maps for the central months of the seasons of 2020 were constructed. It is shown the humidity of Lake Baikal and the relief significantly influence N. On average, the values of the refractive index near the lake are 20–30 N-units higher. It is revealed the monthly average N values have maxima in winter and summer with minimums in spring and autumn, with the main maximum occurring in July.

About the Authors

A. S. Bazarova
Institute of Physical Materials Science of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Aryuna S. Bazarova, Postgraduate Student

WoS Researcher ID J-6334-201

Scopus Author ID 57220185188

SPIN 9806-1618

Ulan-Ude



R. S. Sychev
Institute of Physical Materials Science of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Roman S. Sychev, Postgraduate Student

WoS Researcher ID ABI-6010-2020

Scopus Author ID 57214752084

SPIN 1471-9201

Ulan-Ude



A. V. Bazarov
Institute of Physical Materials Science of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Aleksandr V. Bazarov, Candidate of Technical Sciences

WoS Researcher ID J-3225-2017

Scopus Author ID 50560986300

SPIN 7389-2040

Ulan-Ude



E. B. Atutov
Institute of Physical Materials Science of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Evgeniy B. Atutov, Candidate of Science (Physics and Mathematics)

WoS Researcher ID J-1530-2018

Scopus Author ID 16023981900

SPIN 5267-4690

Ulan-Ude



Yu. B. Bashkuev
Institute of Physical Materials Science of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Yuriy B. Bashkuev, Doctor of Technical Sciences, Professor

WoS Researcher ID T-1634-2017

Scopus Author ID 6603635934

Ulan-Ude



References

1. Kerr D. E. (ed.). Propagation of Short Radio Waves. London, Peter Peregrinus Ltd., 1987, 737 p.

2. Lavergnat J., Sylvain M. Radio Wave Propagation: Principles and Techniques. Chichester, John Wiley & Sons, 2000, 308 p.

3. Grabner M., Kvicera V. Atmospheric Refraction and Propagation in Lower Troposphere Electromagnetic Waves. Rijeka, InTech, 2011, pp. 139–156.

4. Grabner M., Kvicera V., Pechac P., Kvicera M., Valtr P., Martellucci A. World maps of atmospheric refractivity statistics. IEEE Trans. Antennas Propag., 2014, vol. 62, no. 7, pp. 3714–3722.

5. Gomboev N. C., Cidipov Ch. C. Refractive properties of the atmosphere continental regions. Novosibirsk, Nauka, 1985, 125 p. (in Russ.)

6. Batueva E. V., Darijapov D. D. Refractive properties of the troposphere of the Far Eastern regions of Russia. Novosibirsk, SB RAS Publ., 1999, 142 p. (in Russ.)

7. Zhamsueva G. S. Radiometeorological parameters of the polar troposphere and their influence on the propagation of radio waves. Institute of Radio Engineering and Electronics, 1994. 138 p. (in Russ.)

8. Recommendation ITU-R. The radio refractive index: its formula and refractivity data. Geneva, ITU, 2016, 25 p. (in Russ.)

9. Guide to Meteorological Instruments and Methods of Observation. Seventh ed. Geneva, World Meteorological Organization, 2008, no. 8, 681 p.

10. Gomboev N. C., Lenskinov N. I., Mathanova E. M., Tirheeva R. L. On an indirect method for calculating the statistical characteristics of the refractive index of air. Ulan-Ude, BSC SB of the RAS USSR, 1989, 19 p. (in Russ.)

11. Gomboev N. C. Statistical structure of vertical gradients of the refractive index of the atmosphere in Eastern Siberia and the Far East of Russia. Ulan-Ude, Nauka, 2017, 111 p. (in Russ.)

12. Dembelov M. G., Bashkuev Yu. B., Luhnev A. V., Luhneva O. F., Sankov V. A. Moisture content of the troposphere in the Baikal region according to GPS measurements. Zhurnal Radioelektroniki, 2016, no. 3, p. 5. (in Russ.)

13. Bin B. R., Datton E. D. Radiometeorology. Leningrad, Hydrometeoizdat, 1971, 363 p. (in Russ.)

14. Chetyrin Yu. S., Davidenko A. N. Methods for reconstructing vertical profiles of atmospheric parameters for their use by the forecasting subdivisions of the Far Eastern Hydrometeoro logical Center. In: Alekseeva A. A. (ed.). Information digest no. 42. Results of testing new and improved technologies, models and methods of hydrometeorological forecasts. Moscow, Obninsk, IG-SOCIN, 2015, pp. 129–138. (in Russ.)

15. Kashkin V. B., Klikov A. O. Construction of maps of tropospheric delay of GLONASS / GPS signals based on satellite remote sensing of the atmosphere. Siberian Federal University Journal. Series Technics and Techology, 2014, vol. 7, no. 7, pp. 839–845. (in Russ.)


Review

For citations:


Bazarova A.S., Sychev R.S., Bazarov A.V., Atutov E.B., Bashkuev Yu.B. Seasonal Distribution of the Radio Wave Refraction Index over the Territory of Buryatia. SIBERIAN JOURNAL OF PHYSICS. 2021;16(2):5-13. (In Russ.) https://doi.org/10.25205/2541-9447-2021-16-2-5-13

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ISSN 2541-9447 (Print)