HR: 1330h
AN: C32A-0434 [PDF]
TI: Preliminary Examination of Pulse Shapes From GLAS Ocean Returns
AU: * Swift, T P
EM: tswift@ucsd.edu
AU: Minster, B
EM: jbminster@ucsd.edu
AB:
We have examined GLAS data collected over the Pacific ocean during the commission phase of the ICESat mission, in an area
where sea state is well documented. The data used for this preliminary analysis were acquired during two passes along track
95, on March 18 and 26 of 2003, along the stretch offshore southern California. These dates were chosen for their lack of
cloud cover; large (4.0 m) and small (0.7 m) significant wave heights, respectively; and the presence of waves emanating from
single distant Pacific storms. Cloud cover may be investigated using MODIS images
(http://acdisx.gsfc.nasa.gov/data/dataset/MODIS/), while models of significant wave heights and wave vectors for offshore
California are archived by the Coastal Data Information Program (http://cdip.ucsd.edu/cdip_htmls/models.shtml).
We find that the shape of deep-ocean GLAS pulse returns is diagnostic of the state of the ocean surface. A calm surface
produces near-Gaussian, single-peaked shot returns. In contrast, a rough surface produces blurred shot returns which often
feature multiple peaks; these peaks are typically separated by total path lengths on the order of one meter. Gaussian curves
fit to rough-water returns are therefore less reliable and lead to greater measurement error; outliers in the ocean surface
elevation product are mostly the result of poorly fit low-energy shot returns. Additionally, beat patterns and aliasing
artifacts may arise from the sampling of deep-ocean wave trains by GLAS footprints separated by 140m. The apparent
wavelength of such patterns depends not only on the wave frequency, but also on the angle between the ICESat ground track and
the azimuth of the wave crests. We present a preliminary analysis of such patterns which appears to be consistent with a
simple geometrical model.
DE: 0300 ATMOSPHERIC COMPOSITION AND STRUCTURE
DE: 1824 Geomorphology (1625)
DE: 1827 Glaciology (1863)
DE: 4556 Sea level variations
DE: 9805 Instruments useful in three or more fields
SC: Cryosphere [C]
MN: 2003 Fall Meeting