HR: 0830h
AN: C11D-0857 [PDF]
TI: Evolution of a Rift System on the Amery Ice Shelf, East Antarctica
AU: Young, N
AF: Antarctic Climate and Ecosystems CRC, and Australian Antarctic Division, PO Box 252-80, Hobart, TAS
7001
Austria
AU: * Fricker, H A
EM: hafricker@ucsd.edu
AF: Institute of Geophysics and Planetary Physics, Scripps Institution of Oceanography, La Jolla, CA
92093-0225 United States
AU: Bassis, J
AF: Institute of Geophysics and Planetary Physics, Scripps Institution of Oceanography, La Jolla, CA
92093-0225 United States
AU: Coleman, R
AF: Antarctic Climate and Ecosystems CRC, and School of Geography and Environmental Studies, University of
Tasmania, Hobart, TAS 7001
Austria
AB:
We use satellite imagery to monitor the growth of an active rift system on the Amery Ice Shelf, East Antarctica. The rift
system, which has been developing at the ice front over the last 15 years, consists of two longitudinal-to-flow rifts and one
transverse-to-flow rift. The longitudinal rifts are located within the boundaries between adjacent flow bands. These flow
bands originated from ice streams that merged several hundred kilometers upstream to form the Amery Ice Shelf. The high
transverse (lateral) strain rates acting at the front of the ice shelf force these merging bands of ice apart, forming a
rift. The transverse rift extends from the tip of the westernmost longitudinal rift and is one branch of a three-way fissure
which formed around 1995. The transverse rift has elongated by approximately 15 km over the last 7 years, and once it has
reached the eastern longitudinal rift an iceberg will be released. The rate and direction of propagation of the rift have
not been constant. We use moderate resolution MISR, and high resolution Landsat, and ERS and RADARSAT SAR imagery to show
how it has evolved over the last few years. This work is the first stage of a broader investigation of processes
contributing to rift development and calving of icebergs, involving fieldwork, satellite remote sensing, and modelling.
DE: 1640 Remote sensing
DE: 1827 Glaciology (1863)
DE: 1863 Snow and ice (1827)
SC: Cryosphere [C]
MN: 2003 Fall Meeting