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Insights into corona formation through statistical analyses
- Source :
- Journal of Geophysical Research: Planets. 107:18-1
- Publication Year :
- 2002
- Publisher :
- American Geophysical Union (AGU), 2002.
-
Abstract
- Statistical analysis of an expanded database of coronae on Venus indicates that the populations of Type 1 (with fracture annuli) and 2 (without fracture annuli) corona diameters are statistically indistinguishable, and therefore we have no basis for assuming different formation mechanisms. Analysis of the topography and diameters of coronae shows that coronae that are depressions, rimmed depressions, and domes tend to be significantly smaller than those that are plateaus, rimmed plateaus, or domes with surrounding rims. This is consistent with the model of Smrekar and Stofan and inconsistent with predictions of the spreading drop model of Koch and Manga. The diameter range for domes, the initial stage of corona formation, provides a broad constraint on the buoyancy of corona-forming plumes. Coronae are only slightly more likely to be topographically raised than depressions, with Type 1 coronae most frequently occurring as rimmed depressions and Type 2 coronae most frequently occuring with flat interiors and raised rims. Most Type 1 coronae are located along chasmata systems or fracture belts, while Type 2 coronas are found predominantly as isolated features in the plains. Coronae at hotspot rises tend to be significantly larger than coronae in other settings, consistent with a hotter upper mantle at hotspot rises and their active state.
- Subjects :
- Atmospheric Science
Buoyancy
Soil Science
Venus
Planetary geology
Aquatic Science
engineering.material
Oceanography
Geochemistry and Petrology
Statistical analyses
Earth and Planetary Sciences (miscellaneous)
Panache
Statistical analysis
Petrology
Earth-Surface Processes
Water Science and Technology
geography
geography.geographical_feature_category
Ecology
biology
Landform
Paleontology
Forestry
Geophysics
biology.organism_classification
Domo
Space and Planetary Science
engineering
Geology
Subjects
Details
- ISSN :
- 01480227
- Volume :
- 107
- Database :
- OpenAIRE
- Journal :
- Journal of Geophysical Research: Planets
- Accession number :
- edsair.doi...........f93b533c15f96313ad969ebea2a99f5f
- Full Text :
- https://doi.org/10.1029/2002je001904