Variations of the parameters of internal gravity waves in the atmosphere of Central Asia before earthquakes

Cover Page

Cite item

Full Text

Abstract

Based on the data of experimental studies of wave disturbances in the Earth’s atmosphere before and after the earthquakes in Uzbekistan (May 26, 2013) and Kyrgyzstan (January 8, 2007), earlier unknown changes in the parameters of internal gravity waves are revealed. These changes were manifested during the period of five days before the earthquake and in certain cases can be used for short-term prediction of the time when seismic events are to occur.

About the authors

V. V. Adushkin

Institute for Dynamics of Geospheres of the Russian Academy of Sciences; Moscow Institute of Physics and Technology

Email: popel@iki.rssi.ru

Academician of the Russian Academy of Sciences

Russian Federation, 38/1, Leninsky prospect, Moscow, 117334; 9, Institutskij, Dolgoprudny, Moscow region, 141701

V. I. Nifadiev

Kyrgyz-Russian Slavic University

Email: popel@iki.rssi.ru
Kyrgyzstan, 44, Kievskaya str., Bishkek, 720000

B. B. Chen

Kyrgyz-Russian Slavic University

Email: popel@iki.rssi.ru
Kyrgyzstan, 44, Kievskaya str., Bishkek, 720000

S. I. Popel

Space Research Institute of the Russian Academy of Sciences; Higher School of Economics

Author for correspondence.
Email: popel@iki.rssi.ru
Russian Federation, 84/32, Profsoyuznaya street, Moscow, 117997; 20, Myasnitskaya str., Moscow, 101000

G. A. Kogai

Kyrgyz-Russian Slavic University

Email: popel@iki.rssi.ru
Kyrgyzstan, 44, Kievskaya str., Bishkek, 720000

A. Yu. Dubinskii

Space Research Institute of the Russian Academy of Sciences

Email: popel@iki.rssi.ru
Russian Federation, 84/32, Profsoyuznaya street, Moscow, 117997

P. G. Weidler

Karlsruhe Institute of Technology

Email: popel@iki.rssi.ru
Germany, 1, Hermann-von-Helmholtz-Platz, Eggenstein-Leopoldshafen, 76344

References

  1. Ouzounov D., Pulinets S., Hattori K., Taylor P. Pre-Earthquake Processes. A Multidisciplinary Approach to Earthquake Prediction Studies. Hoboken: Wiley, 2018. 384 p.
  2. Кашкин В. Б. // Оптика атмосферы и океана. 2013. Т. 26. № 10. С. 908-916.
  3. Гохберг М. Б., Шалимов С. Л. // Российский журнал наук о Земле. 2000. Т. 2. № 2. С. 95-108.
  4. Линьков Г. М., Петрова Л. Н., Зурошвили Д. Д. // ДАН. 1989. Т. 306. № 2. С. 315-317.
  5. Шалимов С. Л. Атмосферные волны в плазме ионосферы (с геофизическими примерами). М.: ИФЗ РАН, 2018.
  6. Torrence C., Compo G. P. // Bull. Amer. Meteor. Soc. 1998. V. 79. № 1. P. 61-78.
  7. Гершман Б. Н. Динамика ионосферной плазмы. М.: Наука, 1974.
  8. Гохберг М. Б., Некрасов А. К., Шалимов С. Л. // Физика Земли. 1996. № 8. С. 52-55.
  9. Войтов Г. И., Добровольский И. П. // Физика Земли. 1994. № 3. С 20-31.
  10. https://giovanny.gsfc.nasa.gov/giovanny/#service=Vt&=MA13CPASMv5_2_0
  11. Gubenko V. N., Pavelyev A. G., Andreev V. E. // J. Geophys Res. 2008. V. 113. P. D08109. 9 p.
  12. Marquardt C., Healy S. B. // J. Meteorol. Soc. Jpn. 2005. V. 83. № 3. P. 417-428.
  13. Fritts D. C., Alexander M. J. // Rev. Geophys. 2003. V. 41. № 1. P. 1003. 64 p.
  14. Fritts D. C. // Rev. Geophys. Space Phys. 1984. V. 22. P. 275-308.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2019 Russian academy of sciences

This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies