1. 2014
  2. Comparisons of Satellite (GOSAT) and Ground-Based Spectroscopic Measurements of CO2 Content near St. Petersburg

    Gavrilov, N. M. & Timofeev, Y. M., 2014, In: IZVESTIYA. ATMOSPHERIC AND OCEANIC PHYSICS. 50, 9, p. 910-915

    Research output: Contribution to journalArticle

  3. Influence of QBO phases on planetary waves and stratospheric warmings

    Koval, A. V., Gavrilov, N. M., Pogoreltsev, A. I. & Savenkova, E. N., 2014, p. 0042.

    Research output: Contribution to conferenceAbstract

  4. Numerical Modeling of Nonlinear Acoustic-Gravity Wave Propagation in the Whole Atmosphere

    Gavrilov, N. M. & Kshevetskii, S. P., 2014, p. 0019.

    Research output: Contribution to conferenceAbstract

  5. Numerical modeling of the propagation of nonlinear acoustic-gravity waves in the middle and upper atmosphere

    Gavrilov, N. M. & Kshevetskii, S. P., 2014, In: IZVESTIYA. ATMOSPHERIC AND OCEANIC PHYSICS. 50, 1, p. 66-72

    Research output: Contribution to journalArticle

  6. Numerical simulation of the influence of stationary mesoscale orographic waves on the meridional circulation and ozone fluxes in the middle atmosphere

    Gavrilov, N. M., Koval, A. V., Pogoreltsev, A. I. & Savenkova, E. N., 2014, In: Geomagnetism and Aeronomy. 54, 3, p. 381-387

    Research output: Contribution to journalArticle

  7. Three-dimensional numerical simulation of nonlinear acoustic-gravity wave propagation from the troposphere to the thermosphere

    Gavrilov, N. M. & Kshevetskii, S. P., 2014, In: EARTH PLANETS AND SPACE. 66, 1, p. 88_1-8

    Research output: Contribution to journalArticle

  8. Verifications of the nonlinear numerical model and polarization relations of atmospheric acoustic-gravity waves

    Gavrilov, N. M. & Kshevetskii, S. P., 2014, In: Geoscientific Model Development. 7, p. 7805–7822

    Research output: Contribution to journalArticle

ID: 149869294