Highlights

2020

  • Characteristics and sources of gravity waves in thesummer stratosphere based on long-term and high-resolution radiosonde observations

    Writer: Haruka Okui
    Post: 2020.05.11

    Okui, H., and K. Sato (2020)
    Characteristics and Sources of Gravity Waves in the Summer Stratosphere Based on Long-Term and High-Resolution Radiosonde Observations,
    SOLA, 16, 64-69. doi:10.2151/sola.2020-011

  • Relation between the interannual variability in the stratospheric Rossby wave forcing and zonal mean fields suggesting an interhemispheric link in the stratosphere

    Writer: Yuki Matsushita
    Post: 2020.05.11

    Matsushita, Y., D. Kado, M. Kohma, and K. Sato (2020)
    Relation between the interannual variability in the stratospheric Rossby wave forcing and zonal mean fields suggesting an interhemispheric link in the stratosphere,
    Ann. Geophys., 38, 319-329. doi:10.5194/angeo-38-319-2020

2019

  • A diagnostic equation for tendency of lapserate‐tropopause heights

    Writer: Masashi Kohma
    Post: 2020.03.17

    Kohma, M., and K. Sato (2019),
    A diagnostic equation for tendency of lapse-rate-tropopause heights and its application,
    J. Atmos. Sci., 76, 3337-3350. doi:10.1175/JAS-D-19-0054.1

  • Estimate of Turbulent Energy Dissipation Rate From the VHF Radar and Radiosonde Observations in the Antarctic

    Writer: Masashi Kohma
    Post: 2020.03.17

    Kohma, M., K. Sato, Y. Tomikawa, K. Nishimura, and T. Sato (2019),
    Estimate of Turbulent Energy Dissipation Rate From the VHF Radar and Radiosonde Observations in the Antarctic,
    J. Geophys. Res., 124, 2976-2993. doi:10.1029/2018JD029521

  • The climatology of the Brewer–Dobson circulation and the contribution of gravity waves

    Writer: Kaoru Sato
    Post: 2020.03.13

    Sato, K. and S. Hirano (2019),
    The climatology of the Brewer–Dobson circulation and the contribution of gravity waves,
    Atmos. Chem. Phys., 19, 4517-4539. doi:10.5194/acp-19-4517-2019

2018

  • A Two-Dimensional Dynamical Model for the Subseasonal Variability of the Asian Monsoon Anticyclone

    Writer: Arata Amemiya
    Post: 2018.11.27

    Amemiya, A., and K. Sato (2018),
    A Two-Dimensional Dynamical Model for the Subseasonal Variability of the Asian Monsoon Anticyclone,
    J. Atmos. Sci., 75, 3597-3612. doi:10.1175/JAS-D-17-0208.1

2016

  • A study on gravity wave parameterization including three dimensional propagation

    Writer: Arata Amemiya
    Post: 2016.12.01

    Amemiya, A., and K. Sato (2016),
    A new gravity wave parameterization including three dimensional propagation,
    J. Met. Soc. Jpn, 94, 237-256. doi:10.2151/jmsj.2016-013

  • A grid transformation method for a quasi-uniform, circular fine region using the spring dynamics

    Writer: Ryosuke Shibuya
    Post: 2016.12.01

    Shibuya, R., K. Sato, and H. Miura (2016),
    A grid transformation method for a quasi-uniform, circular fine region using the spring dynamics,
    J. Met. Soc. Jpn, doi:10.2151/jmsj.2016-022, in press. (EOR preprint),

2015

  • A study of multiple tropopause structures caused by inertia-gravity waves

    Writer: Ryosuke Shibuya
    Post: 2015.12.01

    Shibuya, R., K. Sato, Y. Tomikawa, M. Tsutsumi, and T. Sato (2015),
    A Study of Multiple Tropopause Structures Caused by Inertia-Gravity Waves in the Antarctic,
    J. Atmos. Sci., 72, 2109-2130. doi:http://dx.doi.org/10.1175/JAS-D-14-0228.1.

2014

  • Variability of upper tropospheric clouds in the polar region during stratospheric sudden warmings

    Writer: Masashi Kohma
    Post: 2014.12.01

    Kohma, M., and K. Sato (2014),
    Variability of upper tropospheric clouds in the polar region during stratospheric sudden warmings,
    J. Geophys. Res. Atmos., 119, 10,100-10,113, doi:10.1002/2014JD021746.

2013

  • Simultaneous occurrence of polar stratospheric clouds and upper tropospheric clouds

    Writer: Masashi Kohma
    Post: 2013.12.01

    Kohma, M. and K. Sato (2013),
    Simultaneous occurrence of polar stratospheric clouds and upper-tropospheric clouds caused by blocking anticyclones in the Southern Hemisphere,
    Atmos. Chem. Phys., 13, 3849-3864, doi:10.5194/acp-13-3849-2013.