Disturbances of the Thermosphere and the Ionosphere during a Meteorological Storm

被引:17
|
作者
Borchevkina, Olga P. [1 ,2 ]
Kurdyaeva, Yuliya A. [1 ]
Dyakov, Yurii A. [3 ,4 ]
Karpov, Ivan V. [1 ,2 ]
Golubkov, Gennady V. [3 ,5 ]
Wang, Pao K. [4 ,6 ]
Golubkov, Maxim G. [3 ]
机构
[1] Russian Acad Sci, West Dept, Pushkov Inst Terr Magnetism Ionosphere & Radio Wa, Kaliningrad 236035, Russia
[2] Immanuel Kant Balt Fed Univ, Inst Phys Math & Informat Technol, Kaliningrad 236016, Russia
[3] Russian Acad Sci, Semenov Fed Res Ctr Chem Phys, Moscow 119991, Russia
[4] Acad Sinica, Res Ctr Environm Changes, Taipei 115, Taiwan
[5] Kurchatov Inst, Natl Res Ctr, Moscow 123182, Russia
[6] Natl Cheng Kung Univ, Dept Aeronaut & Astronaut, Tainan 70101, Taiwan
基金
俄罗斯基础研究基金会; 俄罗斯科学基金会;
关键词
atmosphere-ionosphere coupling; acoustic waves; internal gravity waves; meteorology disturbances; lidar sensing; tropospheric disturbances; ionospheric response; GPS measurements; ACOUSTIC-GRAVITY WAVES; TOTAL SOLAR ECLIPSE; UPPER-ATMOSPHERE; VERTICAL PROPAGATION; CHEMICAL PHYSICS; EARTHS SURFACE; ELECTRIC-FIELD; GPS; SIMULATION; PRESSURE;
D O I
10.3390/atmos12111384
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Determination of the physical mechanisms of energy transfer of tropospheric disturbances to the ionosphere is one of the fundamental problems of atmospheric physics. This article presents the results of observations carried out using two-wavelength lidar sensing at tropospheric altitudes and satellite GPS measurements during a meteorological storm in Kaliningrad (Russia, 54.7 & DEG; N, 20.5 & DEG; E) on 1 April 2016. During lidar sensing, it was found that the amplitudes of variations in atmospheric parameters with periods of acoustic (AWs) and internal gravity (IGWs) waves significantly increased. As a result of numerical modeling using the AtmoSym software package, it was shown that there is a noticeable increase in the period of temperature disturbances from 6-12 min to 10-17 min at altitudes from 150 km up to 230 km during the vertical propagation of acoustic waves and internal gravity waves from the troposphere. Nonlinear and dissipative processes in this layer lead to the formation of sources of secondary waves in the thermosphere with periods longer than those of primary ones. In this case, the unsteady nature of the wave source and the short duration of its operation does not lead to significant heating of the thermosphere. Simultaneous satellite observations demonstrate the response of the ionosphere (total electron content (TEC) disturbance) to tropospheric disturbances. Analysis of the time series of the amplitudes of the reflected lidar signal and TEC made it possible to determine that the response time of the ionosphere to tropospheric disturbances is 30-40 min.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Ionospheric Disturbances during Meteorological Storms
    Karpov, M. I.
    Karpov, I. V.
    Borchevkina, O. P.
    Yakimova, G. A.
    Korenkova, N. A.
    GEOMAGNETISM AND AERONOMY, 2020, 60 (05) : 611 - 618
  • [42] CEDAR-GEM Challenge for Systematic Assessment of Ionosphere/Thermosphere Models in Predicting TEC During the 2006 December Storm Event
    Shim, J. S.
    Rastatter, L.
    Kuznetsova, M.
    Bilitza, D.
    Codrescu, M.
    Coster, A. J.
    Emery, B. A.
    Fedrizzi, M.
    Foerster, M.
    Fuller-Rowell, T. J.
    Gardner, L. C.
    Goncharenko, L.
    Huba, J.
    McDonald, S. E.
    Mannucci, A. J.
    Namgaladze, A. A.
    Pi, X.
    Prokhorov, B. E.
    Ridley, A. J.
    Scherliess, L.
    Schunk, R. W.
    Sojka, J. J.
    Zhu, L.
    SPACE WEATHER-THE INTERNATIONAL JOURNAL OF RESEARCH AND APPLICATIONS, 2017, 15 (10): : 1238 - 1256
  • [43] Coupled Thermosphere-Ionosphere Tongue-Like Structure During the Recovery Phase of the Geomagnetic Storm on 12 May 2021
    Yu, Tingting
    Ren, Zhipeng
    Zhao, Biqiang
    Pedatella, Nicholas
    Wei, Yong
    Li, Shaoyang
    Zhai, Changzhi
    Zhao, Lingxin
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2025, 130 (01)
  • [44] Ionospheric Disturbances during Meteorological Storms
    M. I. Karpov
    I. V. Karpov
    O. P. Borchevkina
    G. A. Yakimova
    N. A. Korenkova
    Geomagnetism and Aeronomy, 2020, 60 : 611 - 618
  • [46] Disturbances of the thermosphere-ionosphere-plasmasphere system and auroral electrojet at 30°E longitude during the St. Patrick's Day geomagnetic storm on 17-23 March 2015
    Klimenko, M. V.
    Klimenko, V. V.
    Despirak, I. V.
    Zakharenkova, I. E.
    Kozelov, B. V.
    Cherniakov, S. M.
    Andreeva, E. S.
    Tereshchenko, E. D.
    Vesnin, A. M.
    Korenkova, N. A.
    Gomonov, A. D.
    Vasiliev, E. B.
    Ratovsky, K. G.
    JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2018, 180 : 78 - 92
  • [47] Numerical modelling of the thermosphere-ionosphere coupling during substorm
    Korenkov, YN
    Bessarab, FS
    Klimenko, VV
    Surotkin, VA
    Smertin, VM
    THERMOSPHERE-IONOSPHERE-MIDDLE ATMOSPHERE COUPLING AND DYNAMICS, 1996, 18 (03): : 41 - 44
  • [48] Numerical modelling of the thermosphere-ionosphere coupling during substorm
    Kaliningrad Observ. of the IZMIRAN, Pobedy av. 41, Kaliningrad 236017, Russia
    Adv Space Res, 3 (41-44):
  • [49] Energetics of the thermosphere-ionosphere system during solar cycle
    Chernigovskaya, MA
    GEOMAGNETISM AND AERONOMY, 2000, 40 (06) : 753 - 759
  • [50] Ionosphere/thermosphere heating determined from dynamic magnetosphere-ionosphere/thermosphere coupling
    Tu, Jiannan
    Song, Paul
    Vasyliunas, Vytenis M.
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2011, 116