Engineering topics
Stiles, B.
Publications and source records attributed to Stiles, B..
Titan's Surface from Cassini RADAR SAR and High Resolution Radiometry Data of the First Five Flybys
The first five Titan flybys with Cassini's Synthetic Aperture RADAR (SAR) and radiometer are examined with emphasis on the calibration and interpretation of the high-resolution radiometry data acquired during the SAR mode (SAR-radiometry). Maps of the 2-cm wavelength brightness temperature are obtained coincident with the SAR swath imaging, with spatial resolution approaching 6 km. A preliminary calibration shows that brightness temperature in these maps varies from 64 to 89 K. Surface features and physical properties derived from the SAR-radiometry maps and SAR imaging are strongly correlated; in general, we find that surface features with high radar reflectivity are associated with radiometrically cold regions, while surface features with low radar reflectivity correlate with radiometrically warm regions. We examined scatterplots of the normalized radar cross-section sigma(exp o) versus brightness temperature, finding differing signatures that characterize various terrains and surface features. Implications for the physical and compositional properties of these features are discussed. The results indicate that volume scattering is important in many areas of Titan's surface, particularly Xanadu, while other areas exhibit complex brightness temperature variations consistent with variable slopes or surface material and compositional properties.
Titan's Elusive Lakes? Properties and Context of Dark Spots in Cassini TA Radar Data
Titan's atmospheric methane abundance suggests the likelihood of a surface reservoir of methane and a surface sink for its photochemical products, which might also be predominantly liquid. Although large expanses of obvious hydrocarbon seas have not been unambiguously observed, a number of rather radar-dark spots up to approximately 30 km across are observed in the Synthetic Aperture Radar (SAR) data acquired during the Cassini TA encounter on October 26th 2004. Here we review the properties and setting of these dark spots to explore whether these may be hydrocarbon lakes.
Channels and Fan-like Features on Titan Surface Imaged by the Cassini RADAR
During two close flybys of Titan on October 26, 2004, and February 15, 2005, the Cassini s radar instrument acquired synthetic-aperture radar (SAR) data revealing Titan s complex surface and intriguing geological features. Fan-like and apparently flow-related features are connected to sinuous and linear features which resemble channels. The fan-like features and channels appear to be relatively SAR-bright and suggest surface roughness properties at the scale and bigger than the Ku-band, and possible volume scattering. A strong correlation between the SAR-bright and radiometric cold regions has been observed. The correlation is consistent with radiometric cold areas being caused by volume scattering at Ku as due to broken low-loss ice and resulting low emissivity as with the surfaces of Europa and Ganymede.
QuikSCAT wind retrievals for tropical cyclones
The use of QuikSCAT data for wind retrievals of tropical cyclones is described.
Commanding Cassini radar for the imaging of Titan's surface
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QuikSCAT geophysical model function and winds for tropical cyclones
This paper presents the results from the analysis of QuiksCAT data from 1999-2000 hurricane seasons with improvements on the wind direction modeling of Ocean o6 for extreme high winds.
QuickSCAT geophysical model function and winds for tropical cyclone
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QuickSCAT geophysical model function and winds for tropical cyclones
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Catalina eddy captured by NASA QuikSCAT satellite
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Impact of rain on QuikSCAT
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QuikSCAT geophysical model function for tropical cyclones and application to hurricane Floyd
The QuikSCAT radar measurements of several tropical cyclones in 1999 have been studied to develop the Geophysical Model Function (GMF) of Ku-band radar sigma(0)s for extreme high wind conditions.
Applications of SeaWinds scatterometer to remote sensing of geophysical media
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QuikSCAT geophysical model function for hurricane wind and rain
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QuikSCAT geophysical model function for hurricane wind and rain
The SeaWinds scatterometer on the QuikSCAT spacecraft has been operating since August 1999 to provide global mapping of ocean winds.