HR: 17:15h
AN: C54A-06 [Abstracts]
TI: Glaciohydraulic Supercooling and Basal Ice Formation at Outlet Glaciers of Vatnajökull and Oraefajokull, Iceland
AU: * Lawson, D E
EM: dlawson@crrel.usace.army.mil
AF: Cold Regions Research and Engineering Laboratory, 72 Lyme Road, Hanover, NH 03755, United States
AU: Larson, G J
EM: larsong@msu.edu
AF: Dept Geological Sciences, Michigan State University, East Lansing, MI 48824, United States
AU: Evenson, E B
EM: ebe0@lehigh.edu
AF: Earth and Environmental Sciences, Lehigh University, Bethlehem, PA 18015, United States
AU: Knudsen, O
EM: oskar@verslo.is
AF: The Commercial College of Iceland, 1, Ofanleiti, IS 103, Iceland
AB:
The hydrology of glaciers is affected by the subglacial environment and in particular overdeepenings that may
result in supercooling of subglacial waters and the entrainment of debris into basal ice. Warm-based outlet
glaciers of Vatnajökull and Oraefajökull, Iceland, are often characterized by overdeepenings in their terminal
regions and up to 100-m long exposures of meters-thick, debris-laden (4 to 35% by vol.) basal zones. During the
period 2002 to 2005, we collected bulk samples (300g) of the basal ice, englacial ice, melt water and frazil ice
from a number of these outlet glaciers to evaluate probable origins of the basal zone and thus the role of basal
topography and hydrology in its generation. Analyses of the 18O and D content show delta 18O and D values for
the basal ice generally plot below the meteoric water line and are less negative then values for englacial ice. The
difference between the mean delta 18O values of the basal and englacial ice is approximately 2.41 per mil, while
the mean delta D values differ by about 11.12 per mil. The delta 18O and delta D values of frazil ice also generally
plot below the meteoric water line and overlap those of the basal ice. Mean delta 18O values of frazil ice and
meltwater differ by approximately 1.93 per mil, while the mean deuterium values differ by about 13.16 per mil.
Little difference exists between the mean delta 18O and D values of meltwater and englacial ice. Tritium
measured in basal ice ranges from 1.9 to 6.1 TU and averages 2.9 TU, whereas in englacial ice it is essentially 0.
Both the physical properties and isotopic composition of the basal zone ice and debris in the outlet glaciers
sampled is consistent with a glaciohydraulic supercooling origin resulting from subglacial discharge out of
overdeepenings.
DE: 0700 CRYOSPHERE (4540)
DE: 0720 Glaciers
DE: 0774 Dynamics
SC: Cryosphere [C]
MN: 2007 Fall Meeting