The advantages of using a composite day analysis for all-sky interferometric meteor radars when measuring mean winds and tides are widely known. On the other hand, problems arise if this technique is applied to Hocking's (2005) gravity wave analysis for all-sky meteor radars. In this paper we describe how a simple change in the procedure makes it possible to use a composite day in Hocking's analysis. Also, we explain how a modified composite day can be constructed to test its ability to measure gravity wave momentum fluxes. Test results for specified mean, tidal, and gravity wave fields, including tidal amplitudes and gravity wave momentum fluxes varying strongly with altitude and/or time, suggest that the modified composite day al...
15th MST Radar WorkshopSession M6: Middle atmosphere dynamics and structureMay 31 (Wed), NIPR Audito...
This thesis details the development, construction and operation of a Doppler wind facility as an upg...
15th MST Radar WorkshopSession M6: Middle atmosphere dynamics and structureMay 31 (Wed), NIPR Audito...
We have applied a modified composite day analysis to the Hocking (2005) technique to study gravity ...
The ability of all-sky interferometric meteor radars to measure mean wind and high-frequency gravity...
AbstractThe statistics of gravity wave momentum flux estimation are investigated using data from the...
Measurement capabilities of five meteor radars are assessed and compared to determine how well radar...
The diurnal variation of gravity wave (GW) momentum flux is derived from the 5 years of meteor radar...
This thesis examines medium frequency (MF) partial reflection and very high frequency (VHF) meteor r...
The current primary radar method for determination of atmospheric momentum fluxes relies on multipl...
International audienceThe current primary radar method for determination of atmospheric momentum flu...
Solar heating of the atmosphere is responsible for most of the diurnal oscillations in the neutral w...
We employ a modified composite day extension of the Hocking (2005) analysis method to study gravity...
We employ a modified composite day extension of the Hocking (2005) analysis method to study gravity ...
294 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.A computer simulation of the ...
15th MST Radar WorkshopSession M6: Middle atmosphere dynamics and structureMay 31 (Wed), NIPR Audito...
This thesis details the development, construction and operation of a Doppler wind facility as an upg...
15th MST Radar WorkshopSession M6: Middle atmosphere dynamics and structureMay 31 (Wed), NIPR Audito...
We have applied a modified composite day analysis to the Hocking (2005) technique to study gravity ...
The ability of all-sky interferometric meteor radars to measure mean wind and high-frequency gravity...
AbstractThe statistics of gravity wave momentum flux estimation are investigated using data from the...
Measurement capabilities of five meteor radars are assessed and compared to determine how well radar...
The diurnal variation of gravity wave (GW) momentum flux is derived from the 5 years of meteor radar...
This thesis examines medium frequency (MF) partial reflection and very high frequency (VHF) meteor r...
The current primary radar method for determination of atmospheric momentum fluxes relies on multipl...
International audienceThe current primary radar method for determination of atmospheric momentum flu...
Solar heating of the atmosphere is responsible for most of the diurnal oscillations in the neutral w...
We employ a modified composite day extension of the Hocking (2005) analysis method to study gravity...
We employ a modified composite day extension of the Hocking (2005) analysis method to study gravity ...
294 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.A computer simulation of the ...
15th MST Radar WorkshopSession M6: Middle atmosphere dynamics and structureMay 31 (Wed), NIPR Audito...
This thesis details the development, construction and operation of a Doppler wind facility as an upg...
15th MST Radar WorkshopSession M6: Middle atmosphere dynamics and structureMay 31 (Wed), NIPR Audito...