HR: 0800h
AN: C51A-0077 [Abstracts]
TI: Basal heterogeneity of Thwaites Glacier, Antarctica: Results from advanced ice penetrating radar data
AU: * Young, D A
EM: duncan@ig.utexas.edu
AF: University of Texas at Austin, J.J. Pickle Research Campus
University of Texas Institute for Geophysics
Mail Code R2200
10100 Burnet Road, Austin, TX 78758, United States
AU: Blankenship, D D
EM: blank@ig.utexas.edu
AF: University of Texas at Austin, J.J. Pickle Research Campus
University of Texas Institute for Geophysics
Mail Code R2200
10100 Burnet Road, Austin, TX 78758, United States
AU: Holt, J W
EM: jack@ig.utexas.edu
AF: University of Texas at Austin, J.J. Pickle Research Campus
University of Texas Institute for Geophysics
Mail Code R2200
10100 Burnet Road, Austin, TX 78758, United States
AU: Kempf, S E
EM: scottk@ig.utexas.edu
AF: University of Texas at Austin, J.J. Pickle Research Campus
University of Texas Institute for Geophysics
Mail Code R2200
10100 Burnet Road, Austin, TX 78758, United States
AB:
Thwaites Glacier dominates the mass balance of the northern West Antarctic Ice Sheet. Subglacial topography
and crustal variability strongly control the organization of flow in this catchment, and will likely dictate the response
of this glacier to climate change. Basal roughness is symptomatic of the coupling between the ice sheet and
the underlying crust, although causality can be unclear.
Using airborne ice penetrating radar data collected In the 2004-05 austral summer, a comprehensive
aerogeophysical survey was flown across the northern WAIS. The AGASEA/BBAS survey, (a collaborative effort
between the University of Texas at Austin and the British Antarctic Survey) collected 50, 000 line kilometers of
coherent radar data. We use this data to analyze the basal roughness of Thwaites Glacier using both along track
slope statistics and lengthening of the bed echo in individual records.
The first method applies to hectometer to decimeter length scales. We improve on initial efforts using low
resolution unfocused radar data by using a new high resolution focused SAR algorithm, decreasing length
scales of analysis from hundreds of meters to tens of meters. The second method, examining the length of the
received bed echo, is instructive as to the distribution of slopes on the the scale of the radar carrier wave,
integrated over the footprint of the radar.
Overall, we find a self-affine landscape with a similar topological structure to that found in many erosional
terrains. We find that large portions of Thwaites Glacier are underlain by very smooth material, which also
corresponds to regions of low bed strength. Unlikely the Siple Coast ice streams to the south, however, we find
little evidence of the downstream advection of this material. We suggest that the nature of ice sheet basal
coupling in the Thwaites Catchment is different to that found on the Siple Coast.
UR: http://www.ig.utexas.edu/research/projects/agasea/
DE: 0659 Random media and rough surfaces
DE: 0720 Glaciers
DE: 0726 Ice sheets
DE: 0794 Instruments and techniques
DE: 4440 Fractals and multifractals
SC: Cryosphere [C]
MN: 2007 Fall Meeting