Temperature, pressure, density, and wind measurements in the upper stratosphere and mesosphere, 1964
Nike-Cajun sounding rocket temperature, pressure, density, and wind measurements in upper stratosphere and mesosphere - tables
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Nike-Cajun sounding rocket temperature, pressure, density, and wind measurements in upper stratosphere and mesosphere - tables
Pressure, density, temperature and wind measurements in mesosphere resulted from rocket soundings to determine structure
Temperature and wind profiles in stratosphere and mesosphere from acoustic grenade soundings
Rocket sounding data from upper stratosphere and mesosphere
Temperature and wind profiles in stratosphere and mesosphere during winter and summer determined by grenade soundings, noting diurnal variations
This study uses global synoptic meteorological fields from a high-altitude data assimilation system to investigate the spatial and temporal characteristics of the quasi-2 day wave (Q2DW) and migrating diurnal tide during the Northern Hemisphere summers of 2007, 2008, and 2009. By applying a 2-dimensional fast Fourier transform to meridional wind and temperature fields, we are able to identify Q2DW source regions and to diagnose propagation of Q2DW activity into the upper mesosphere and lower thermosphere. We find that Q2DW is comprised primarily of westward propagating zonal wavenumber 3 and wavenumber 4 components that originate from within baroclinically unstable regions along the equatorward flank of the summer midlatitude easterly jet. Amplitude variations of wavenumbers 3 and 4 tend to be anti-correlated throughout the summer, with wavenumber 3 maximizing in July and wavenumber 4 maximizing in late June and early August. Monthly mean Q2DW amplitudes between 30 50N latitude are largest when diurnal tidal amplitudes are smallest and vice versa. However, there is no evidence of any rapid amplification of the Q2DW via nonlinear interaction with the diurnal tide. Instead, variations of Q2DW amplitudes during July are closely linked to variations in the strength and location of the easterly jet core from one summer to the next, with a stronger jet producing larger Q2DW amplitudes. Linear instability model calculations based on the assimilated wind fields find fast growing zonal wavenumber 3 and 4 modes with periods near 2 days in the vicinity of the easterly jet.
Results from new observations of mesospheric temperature inversion layers using long-term lidar measurements at mid- and low-latitudes are presented.
We evaluated a method for retrieving vertical temperature and Doppler wind velocity profiles of the Venusian nightside mesosphere from the CO2 absorption line resolved by mid-infrared heterodyne spectroscopy. The achievable sensitive altitude and retrieval accuracy were derived with multiple model spectra generated from various temperature and wind velocity profiles with several noise levels. The temperature profiles were retrieved at altitudes of 70–100 km with a vertical resolution of 5 km and a retrieval accuracy of ±15 K. The wind velocity was also retrieved at an altitude of approximately 85 km with a vertical resolution of 10 km and a retrieval accuracy of ± 25–50 m/s. In addition, we studied an event and applied our method to spectra obtained by the HIPWAC instrument attached to the NASA/IRTF 3-m telescope on May 19–22, 2012. Retrieved wind velocities in a latitude of 33° S at 3:00 LT were interpreted as subsolar-to-antisolar (SS-AS) flows at altitudes of 84 ±6 km and 94 ±7 km, and they were stronger than expected. This result suggested that the transition between the retrograde super rotational zonal (RSZ) wind and SS-AS flow may occur at altitudes below 90 km which previously was predicted to be the transition region. This work provides a basis for our analysis of further observations obtained by a mid-infrared heterodyne spectrometer MILAHI attached to the Tohoku University 60-cm telescope at Haleakalā, Hawaii.
Synoptic rocket grenade experiments and meteorological rocket network soundings related to conventional circulation systems in upper stratosphere and mesosphere
Nike Apache pitot tube rocket sounding measuring of Southern Hemisphere stratosphere and mesosphere along west coast of South America
Nitric oxide distributions and annual variations in mesosphere
Meteorological rocket soundings in stratosphere and mesosphere, 1966 - tables
Molecular oxygen microwave spectrum application to mesospheric temperature profile determination, noting absorption matrix and tensor equation for microwave spectrum computation
Mesospheric ozone densities measured from night airglow data using rocket-borne photometers, discussing night enhancement
Relationship between noctilucent clouds optical characteristics and ice sublimation in mesosphere, discussing scattering properties of particle distributions
Stratosphere and mesosphere wind and temperature structure from rocket measurements, noting solar radiation absorption by ozone as atmospheric heat source
Southern Hemisphere stratosphere and mesosphere temperature and pressure soundings by ship-borne pitot static tube, noting temperature gradients and zonal wind intensities
Theoretical comparison of beads, wires, and films as rocketsonde temperature sensors in mesosphere