HR: 0800h
AN: C41A-0186 [Abstracts]
TI: Discharge and water chemistry of High Arctic rivers in NW Greenland (76$\deg$N, 68$\deg$W)
AU: * Hagedorn, B
EM: hagedorn@u.washington.edu
AF: University of Washington, Department of Earth and Space Sciences
Box 351360, Seattle, WA 98105
United States
AU: Sletten, R S
EM: sletten@u.washington.edu
AF: University of Washington, Department of Earth and Space Sciences
Box 351360, Seattle, WA 98105
United States
AU: Vigna, A C
EM: avigna@u.washington.edu
AF: University of Washington, Department of Earth and Space Sciences
Box 351360, Seattle, WA 98105
United States
AU: Hallet, B
EM: hallet@u.washington.edu
AF: University of Washington, Department of Earth and Space Sciences
Box 351360, Seattle, WA 98105
United States
AB:
The volume, temperature, and quality of freshwater runoff from high latitude areas ultimately affect sensitive components of
polar oceans, including water stratification, nutrient cycling, and formation of deepwater currents. Freshwater is conveyed
from Greenland to the ocean from a multitude of medium-sized rivers for which little is known about discharge and water
characteristics. River runoff together with microclimate and soil processes were recorded in a typical high Arctic area in
NW Greenland where complete climate records from pre-1978 to the present indicate increases in mean annual air temperature
from -12.0$\deg$C to -10.7$\deg$C and precipitation from 65 mm to 120 mm water equivalent between 1993 and 2002. The study
will improve understanding of the interaction between climate, landscape processes, and river runoff.
The study site extends from the western edge of the Greenland Ice Sheet to Baffin Bay; it covers an area ranging between
10-20 km E-W and 10-15 km N-S, and the elevations reach 700 m. It is a typical high Arctic environment with sparse vegetation
and pervasive active patterned ground. Most of the area is covered by glacial drift that resembles the underlying
sedimentary and igneous Archean and Proterozoic bedrock.
To address how seasonal weather patterns and landscape processes affect runoff and water quality, as well as to examine
weathering and carbon budgets in the drainage, we monitor water discharge and suspended load, water temperature, water
chemistry (pH, dissolved ions, dissolved organic and inorganic carbon) of three rivers. Two of these rivers originate as melt
water runoff from the Greenland Ice Sheet. The third stream is fed by local snowmelt and summer rain events. In addition,
climate data along with soil moisture and temperature are recorded with automated stations at two locations. The potential
sources of river water are thawing permafrost, local snowmelt, rain, and melting of glacial ice that all have distinct
isotopic signatures ($\delta$D and $\delta$$^{18}$O). Stable isotopes therefore, are used to separate the hydrograph into
these sources to help us relate discharge pattern and water quality to climate (precipitation, temperature) and landscape
processes (thawing of permafrost, weathering, decomposition of organic matter). This presentation focuses on first data set
collected from June to September 2004.
DE: 1806 Chemistry of fresh water
DE: 1823 Frozen ground
DE: 1836 Hydrologic budget (1655)
DE: 1860 Runoff and streamflow
DE: 1871 Surface water quality
SC: Cryosphere [C]
MN: 2004 AGU Fall Meeting