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Applications of spaceborne radar laboratory data to the study of aeolian processes
- Source :
- Greeley, R, Blumberg, D G, McHone, J F, Dobrovolskis, A, Iversen, J D, Lancaster, N, Rasmussen, K R, Wall, S D & White, B R 1997, ' Applications of spaceborne radar laboratory data to the study of aeolian processes ', Journal of Geophysical Research E: Planets, vol. 102, no. E5, 97JE00518, pp. 10971-10983 . https://doi.org/10.1029/97JE00518
- Publication Year :
- 1997
- Publisher :
- American Geophysical Union (AGU), 1997.
-
Abstract
- Aerodynamic roughness (z0) is an important parameter in studies of sand and dust transport, as well as atmospheric circulation models. Aerodynamic roughness is a function of the size and spacing of surface roughness elements and is typically determined at point locations in the field from wind velocity profiles. Because field measurements require complex logistics, z0 values have been obtained for very few localities. If radar can be used to map z0, estimates can be obtained for large areas. In addition, because aerodynamic roughness can change in response to surface processes (e.g., flooding of alluvial surfaces), radar remote sensing could obtain new measurements on short timescales. Both z0 and the radar backscatter coefficient σ0 are dependent on topographic roughness at the submeter scale, and correlation between, these two parameters was developed based on radar data obtained from aircraft (AIRSAR). The Spaceborne Radar Laboratory (SRL) afforded the opportunity to test the correlation for data obtained from orbit. SRL data for sites in Death Valley, California; Lunar Lake, Nevada; and Gobabeb, Namibia, were correlated with wind data and compared with previous radar z0 relations. Correlations between σ0 and z0 for L band (λ = 24 cm) HV (H, vertically and V, vertically polarized modes) L band HH, and C band (λ = 5.6 cm) HV compare favorably with previous studies. Based on these results, maps of z0 values were derived from SRL data for each site, demonstrating the potential to map z0 for large vegetation-free areas from orbit using radar systems.
- Subjects :
- B/E linked scan
Atmospheric Science
L band
F-compounds
C band
Immobilized proteases
Soil Science
Surface finish
Aquatic Science
Oceanography
MALDI-MS
Wind speed
law.invention
Peptide mapping
Geochemistry and Petrology
law
Earth and Planetary Sciences (miscellaneous)
Surface roughness
Radar
Earth-Surface Processes
Water Science and Technology
Remote sensing
Tryptic digestion
Ecology
Paleontology
Si-compounds
Forestry
Metastable ion
Geophysics
Space and Planetary Science
Aeolian processes
Protein identification
Scale (map)
Ortho-effect
Geology
Subjects
Details
- ISSN :
- 01480227
- Volume :
- 102
- Database :
- OpenAIRE
- Journal :
- Journal of Geophysical Research: Planets
- Accession number :
- edsair.doi.dedup.....52f6d9369bf67bf6b67951a6ca3c39f6
- Full Text :
- https://doi.org/10.1029/97je00518