Determination of Venus Winds by Ground-Based Radio Tracking of the VEGA Balloons
- 21 March 1986
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 231 (4744) , 1414-1416
- https://doi.org/10.1126/science.231.4744.1414
Abstract
A global array of 20 radio observatories was used to measure the three-dimensional position and velocity of the two meteorological balloons that were injected into the equatorial region of the Venus atmosphere near Venus midnight by the VEGA spacecraft on 11 and 15 June 1985. Initial analysis of only radial velocities indicates that each balloon was blown westward about 11,500 kilometers (8,000 kilometers on the night side) by zonal winds with a mean speed of about 70 meters per second. Excursions of the data from a model of constant zonal velocity were generally less than 3 meters per second; however, a much larger variation was evident near the end of the flight of the second balloon. Consistent systematic trends in the residuals for both balloons indicate the possibility of a solar-fixed atmospheric feature. Rapid variations in balloon velocity were often detected within a single transmission (330 seconds); however, they may represent not only atmospheric motions but also self-induced aerodynamic motions of the balloon.Keywords
This publication has 9 references indexed in Scilit:
- Implications of the VEGA Balloon Results for Venus Atmospheric DynamicsScience, 1986
- VEGA Balloon Dynamics and Vertical Winds in the Venus Middle Cloud RegionScience, 1986
- VEGA Balloon System and InstrumentationScience, 1986
- Overview of VEGA Venus Balloon in Situ Meteorological MeasurementsScience, 1986
- The VEGA Venus Balloon ExperimentScience, 1986
- Zonal and meridional circulation of the lower atmosphere of Venus determined by radio interferometryJournal of Geophysical Research, 1980
- Cloud Images from the Pioneer Venus OrbiterScience, 1979
- Venus: Atmospheric Motion and Structure from Mariner 10 PicturesScience, 1974
- Spherical Balloon Wind Sensor BehaviorJournal of Applied Meteorology, 1965