Seasonality in planetary wave structure in the southern hemisphere stratosphere and troposphere (1OOC-1 mb) is studied based on eight years (1979-1986) of daily geopotential data. Emphasis is placed on the distinctive seasonality in the stratosphere, along with tracing the stratospheric fluctuations into the troposphere. l i m e filtering is used to separate stationary and transient components. Maximum geopotential height variance is observed in the middle to upper stratosphere in late winter-spring, with a distinct secondary, smaller maximum in late fall-early winter; these maxima sandwich the strongest mid-winter zonal winds. This sequence occurs approximately one month earlier in the upper stratosphere. Two corresponding peaks are observ...
An analysis was done of intense midwinter warmings which took place in the southern hemisphere strat...
An interactive stratospheric model was run for 13 years while being forced with the observed daily-v...
The following problems: (1) The effects of wave transience on the propagation of planetary waves in ...
The interannual variability of the seasonal evolution in the southern hemisphere is investigated, us...
The Ninth Symposium on Polar Science/Interdisciplinary sessions: [IW] Whole atmosphere, Thu. 6 Dec. ...
A simple mechanistic model, with time-independent planetary wave forcing at the lower boundary, is u...
© 2018, Pleiades Publishing, Ltd. An analysis of spectra of wave disturbances with zonal wave number...
The semi-annual oscillation (SAO) in sea-level pressure at high southern latitudes is the consequenc...
Dynamical features of the interannual variations of the seasonal march in the Southern Hemisphere st...
The pressure modulated radiometer (PMR) aboard Nimbus 6,collected radiance data from June 1975 until...
The effects of an upper-stratospheric reflecting surface on the vertical structure of stratospheric ...
Wave and zonal mean features of the downward dynamic coupling between the stratosphere and troposphe...
Data from a number of sources are used to examine the climatology of the southern hemisphere middle ...
The strength of the stratospheric wave driving during northern winter is often quantified by the Jan...
Stationary planetary waves in the southern stratosphere display a characteristic seasonal cycle. Pre...
An analysis was done of intense midwinter warmings which took place in the southern hemisphere strat...
An interactive stratospheric model was run for 13 years while being forced with the observed daily-v...
The following problems: (1) The effects of wave transience on the propagation of planetary waves in ...
The interannual variability of the seasonal evolution in the southern hemisphere is investigated, us...
The Ninth Symposium on Polar Science/Interdisciplinary sessions: [IW] Whole atmosphere, Thu. 6 Dec. ...
A simple mechanistic model, with time-independent planetary wave forcing at the lower boundary, is u...
© 2018, Pleiades Publishing, Ltd. An analysis of spectra of wave disturbances with zonal wave number...
The semi-annual oscillation (SAO) in sea-level pressure at high southern latitudes is the consequenc...
Dynamical features of the interannual variations of the seasonal march in the Southern Hemisphere st...
The pressure modulated radiometer (PMR) aboard Nimbus 6,collected radiance data from June 1975 until...
The effects of an upper-stratospheric reflecting surface on the vertical structure of stratospheric ...
Wave and zonal mean features of the downward dynamic coupling between the stratosphere and troposphe...
Data from a number of sources are used to examine the climatology of the southern hemisphere middle ...
The strength of the stratospheric wave driving during northern winter is often quantified by the Jan...
Stationary planetary waves in the southern stratosphere display a characteristic seasonal cycle. Pre...
An analysis was done of intense midwinter warmings which took place in the southern hemisphere strat...
An interactive stratospheric model was run for 13 years while being forced with the observed daily-v...
The following problems: (1) The effects of wave transience on the propagation of planetary waves in ...