HR: 0800h
AN: G51C-0613 [Abstracts]
TI: NASA's DESDynI InSAR and Multibeam LIDAR Mission
AU: * Donnellan, A
EM: Andrea.Donnellan@jpl.nasa.gov
AF: Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive,
Pasadena, CA 91109-8099, United States
AU: Hager, B H
EM: bhhager@mit.edu
AF: Massachusetts Institute of Technology, Department of Earth Atmospheric & Planetary
Science, Cambridge, MA 02139, United States
AU: Zebker, H A
EM: zebker@stanford.edu
AF: Stanford University, 350 Serra Mall, Stanford, CA 94305-9515,
AU: Rosen, P A
EM: Paul.Rosen@jpl.nasa.gov
AF: Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive,
Pasadena, CA 91109-8099, United States
AU: Fahnestock, M A
EM: mark.fahnestock@unh.edu
AF: University of New Hampshire, CSRC/EOS,
236A Morse Hall, Durham, NH 03824, United States
AU: Blair, J B
EM: James.B.Blair@nasa.gov
AF: NASA Goddard Space Flight Center, Laser Remote Sensing Branch, Greenbelt, MD 20771,
United States
AB:
InSAR has been used to study surface deformation of the solid Earth and cryosphere and more recently in
combination with LIDAR to study vegetation for estimates of biomass. The NRC decadal survey recommends that
DESDynI (Deformation, Ecosystem Structure, and Dynamics of Ice), an integrated L-band InSAR and multibeam
LIDAR mission, launch in the 2010-2013 timeframe. The mission will measure surface deformation for solid
Earth and cryosphere objectives and vegetation structure for understanding the carbon cycle. The objectives of
DESDynI are to 1) determine the likelihood of earthquakes, volcanic eruptions, and landslides, 2) Predict the
response of ice sheets to climate change and impact on sea level, 3) characterize the effects of changing climate
and land use on species habitats and carbon budget, and 4) monitor migration of fluids associated with
hydrocarbon production and groundwater resources. This requires that surface deformation be measured
globally at the level of 1-2 mm/yr to study geophysical processes and ice sheet mass balance. The mission also
needs to develop globally consistent and spatially resolved estimates of aboveground biomass and carbon
stocks to 10 Mg/ha or to within 20% and changes and trends to 2-4 Mg/ha.
UR: http://desdyni.org
DE: 1209 Tectonic deformation (6924)
DE: 1294 Instruments and techniques
DE: 8110 Continental tectonics: general (0905)
DE: 8488 Volcanic hazards and risks
DE: 8494 Instruments and techniques
SC: Geodesy [G]
MN: 2007 Fall Meeting