HR: 0800h
AN: G51C-0616 [Abstracts]
TI: Airborne Laser Swath Mapping of the Denton Hills, Transantarctic Mountains, Antarctica: Mapping relations between glacial and tectonic landforms
AU: * Wilson, T J
EM: wilson.43@osu.edu
AF: School of Earth Sciences,
Ohio State University, 125 S. Oval Mall, Columbus, OH 43210, United States
AU: Csatho, B
EM: bcsatho@buffalo.edu
AF: Dept. of Geology,
University at Buffalo, 855 Natural Sciences Complex, Buffalo, NY 14260, United States
AB:
New high-resolution digital elevation data were obtained by airborne laser scanning (ALS) using NASA's ATM
system for the Denton Hills, along the coastal foothills of the Royal Society Range, Transantarctic Mountains.
Digital elevation models, displayed as shaded-relief images and slope maps, portray geomorphic landscape
features in unprecedented detail across the region. Lineaments etched into bedrock occur in both northwest and
northeast orientations, and most likely represent fault arrays and associated fracture planes. Though the ages of
these brittle structures are poorly constrained, at least some are neotectonic faults as shown by a northeast-
trending lineament cutting a hanging valley terminal moraine. Mappable glacial features include the western limit
of the Ross Sea drift, recording the limit of grounded ice at the Last Glacial Maximum; ridges and mounds
interpreted as lake-ice conveyor deposits from proglacial lakes; and uplifted lake shorelines providing markers
for documentation of postglacial rebound magnitude and rates. In addition to the ability to map the extent of
glacial features spatially, the high-resolution topographic data makes it possible to quantify feature height, length
and breadth, and to systematically measure such aspects as paleoshoreline elevations across the region.
DE: 0726 Ice sheets
DE: 8107 Continental neotectonics (8002)
DE: 8177 Tectonics and climatic interactions
DE: 9310 Antarctica (4207)
SC: Geodesy [G]
MN: 2007 Fall Meeting