HR: 08:00h
AN: C21B-01 INVITED [Abstracts]
TI: Overview of the ICESat Mission and Results
AU: * Zwally, H
EM: zwally@icesat2.gsfc.nasa.gov
AF: NASA Goddard Space Flight Center, Code 971 Oceans and Ice Branch, Greenbelt, MD 20771
United States
AB:
NASA's Ice, Cloud, and Land Elevation Satellite (ICESat), launched in January, 2003, has been measuring surface elevations of
ice and land, vertical distributions of clouds and aerosols, vegetation-canopy heights, and other features with
unprecedented accuracy and sensitivity. The ICESat mission, which was designed to operate continuously for 3 to 5 years, has
so far acquired science data during five periods of laser operation ranging from 33 to 54 days each. The primary purpose of
ICESat has been to acquire time-series of ice-sheet elevation changes for determination of the present-day mass balance of
the ice sheets, study of associations between observed ice changes and polar climate, and improve estimates of the present
and future contributions to global sea level rise. ICEsat's atmospheric measurements are providing fundamentally new
information on the precise vertical structure of clouds and aerosols. In particular, cloud heights are important for
understanding radiation balance and their effects on climate change. Other applications include mapping of polar sea-ice
freeboard and thickness, high-resolution mapping of ocean eddies, glacier topography, and lake and river levels. ICESat has
a 1064 nm laser channel for near-surface altimetry with a designed range precision of 10 cm that is actually 2 cm on-orbit.
Vertical distributions of clouds and aerosols are obtained with 75 m resolution from both the 1064 nm channel and the more
sensitive 532 nm channel. The laser footprints are about 70 m spaced at 170 m along-track. The accuracy of the
satellite-orbital heights is about 3 cm. The star-tracking attitude-determination system should enable footprints to be
located to 6 m horizontally when attitude calibration is completed. The spacecraft attitude is controlled to point the laser
beam to within 100 m (35 m goal) of reference surface tracks at high latitudes and to point off-nadir up to 5 degrees to
targets of interest. The remaining laser lifetime will be used for approximately 33-day periods at 3 to 6 month-intervals to
optimize the science return. The first ICESat was intended to be followed by successive missions to measure changes over 15
years, and has clearly proven the unique capability of laser measurements to meet multi-disciplinary science objectives. An
example of continuing requirements is: "Continued observations with satellite altimeters, including . the laser altimeter on
ICESat . should be continued for at least 15 years . to establish the climate sensitivities of the ice mass balance and
decadal-scale trends" (Climate Change 2001, IPCC, 2001).
DE: 4556 Sea level variations
DE: 1827 Glaciology (1863)
DE: 1600 GLOBAL CHANGE (New category)
DE: 1610 Atmosphere (0315, 0325)
DE: 0305 Aerosols and particles (0345, 4801)
SC: Cryosphere [C]
MN: 2004 AGU Fall Meeting