HR: 1340h
AN: GC23A-0986 [Abstracts]
TI: Remote Sensing and GIS Based Quantification of Thermokarst in North Siberian Yedoma Deposits and Implications for Holocene Landscape and Carbon Dynamics
AU: * Grosse, G
EM: ggrosse@gi.alaska.edu
AF: Geophysical Institute, University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK
99775, United States
AU: Schirrmeister, L
EM: lschirrmeister@awi-potsdam.de
AF: Alfred Wegener Institute for Polar and Marine Research, Research Unit Potsdam
Telegrafenberg A43, Potsdam, 14473, Germany
AU: Romanovsky, V E
EM: ffver@uaf.edu
AF: Geophysical Institute, University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK
99775, United States
AB:
Ice Complex deposits, also known as yedoma, are widely distributed in the North Siberian coastal lowlands.
These Late Pleistocene terrestrial accumulations of up to several tens of meters in thickness are characterised
by fine to medium grained clastic sediments, a very high ground ice content up to 90 vol-%, and mean total
organic carbon (TOC) contents of 2-4%. Ground ice content includes large ice wedges and segregated ground
ice in the form of small ice lenses and ice bands.
Degradation of the Ice Complex in the form of thermokarst and thermo-erosion during the course of the Holocene
produced massive landscape changes degenerating the existing accumulation plains to a complex system of
thermokarst basins, lakes, and thermo-erosive valleys. Thermokarst triggered several feedback mechanisms
that involve hydrology, vegetation and energy and matter fluxes. Thermokarst was a major agent in the partial
transformation of the stored TOC into greenhouse gases. To evaluate the past and possible future impacts of
thermokarst and related environmental feedbacks, the assessment of the current distribution and characteristics
of Ice Complex deposits and thermokarst features is an important task.
Field data, remote sensing, and terrain modelling within a geographical information system (GIS) are used to
characterize Ice Complex deposits and thermokarst for a variety of sites in the Laptev Sea region, North Siberia.
Field data consists of Ice Complex distribution, thickness, ice content, and TOC. Remote sensing was applied for
the mapping of Ice Complex extent and distribution of thermokarst surface features in this area. Terrain
modelling was used to quantify the volume of Ice Complex deposits based on digital elevation models,
stratigraphical information, and satellite image mapping. Subsequently, terrain modelling was also applied to
characterize thermokarst in this area. An assessment of the original, eroded, and remaining volume for the Ice
Complex in the study area is provided.
DE: 0702 Permafrost (0475)
DE: 0708 Thermokarst
DE: 0758 Remote sensing
DE: 1621 Cryospheric change (0776)
DE: 1630 Impacts of global change (1225)
SC: Global Environmental Change [GC]
MN: 2007 Fall Meeting