Diurnal propagating tides in the low-latitude middle atmosphere
暂无分享,去创建一个
[1] D. Strobel,et al. Parameterization of IR cooling in a Middle Atmosphere Dynamics Model: 2. Non‐LTE radiative transfer and the globally averaged temperature of the mesosphere and lower thermosphere , 1984 .
[2] W. Chao,et al. On the linear approximation of gravity wave saturation in the mesosphere , 1984 .
[3] S. Fels. The Radiative Damping of Short Vertical Scale Waves in the Mesosphere , 1984 .
[4] T. Tsuda,et al. Fifteen‐day observation of mesospheric and lower thermospheric motions with the aid of the Arecibo UHF radar , 1983 .
[5] J. Forbes,et al. Turbulence originating from convectively stable internal waves , 1983 .
[6] C. Leovy,et al. An accurate radiative heating and cooling algorithm for use in a dynamical model of the middle atmosphere , 1982 .
[7] Jeffrey M. Forbes,et al. Atmospheric tides: 1. Model description and results for the solar diurnal component , 1982 .
[8] R. Vincent,et al. Some direct comparisons of mesospheric winds observed at Kyoto and Adelaide , 1982 .
[9] G. Groves. Hough components of water vapour heating , 1982 .
[10] J. Forbes,et al. Theoretical studies of atmospheric tides , 1979 .
[11] J. Forbes,et al. Tides in the joint presence of friction and rotation: An f plane approximation , 1979 .
[12] J. Forbes,et al. Thermal excitation of atmospheric tides due to insolation absorption by O3 and H2O , 1978 .
[13] J. Mathews. Measurements of the diurnal tides in the 80‐ to 100‐km altitude range at Arecibo , 1976 .
[14] R. Lindzen. Internal gravity waves in atmospheres with realistic dissipation and temperature part I. Mathematical development and propagation of waves into the thermosphere , 1970 .
[15] R. Hodges. Eddy diffusion coefficients due to instabilities in internal gravity waves. , 1969 .
[16] R. Lindzen. Thermally driven diurnal tide in the atmosphere , 1967 .