HR: 0800h
AN: C21A-0068 [Abstracts]
TI: Topoclimatic Influences on Active-Layer Development in Northern Alaska
AU: Schimek, M A
EM: mschimek@udel.edu
AF: University of Delaware, Department of Geography, Newark, DE 19716, United States
AU: * Nelson, F E
EM: fnelson@udel.edu
AF: University of Delaware, Department of Geography, Newark, DE 19716, United States
AB:
Although many recent studies of active layer development address spatial variations in soil thermal properties
and moisture conditions, few have attempted to isolate topoclimatic influences over thaw depth. The n-factor, the
ratio of ground surface to air degree-day sums, is widely used in conjunction with analytic solutions for thaw
depth in geotechnical work. In an analogous manner, the ratio of potential radiation received on a slope to that
incident on a horizontal surface at the same latitude can be incorporated into formulations such as the Berggren
or Stefan equations. Observed patterns of thaw depth on various facets of an anthropogenic thermokarst
landform near Prudhoe Bay, Alaska show systematic variation with slope aspect. Use of the "r-factor" with the
Berggren solution accurately reproduces these patterns, demonstrating the importance of differential radiation
loading, even in high-latitude regions.
DE: 0702 Permafrost (0475)
DE: 0706 Active layer
DE: 0708 Thermokarst
SC: Cryosphere [C]
MN: 2007 Fall Meeting