Geometry and flow conditions of subglacial water at South Cascade Glacier, Washington State, U.S.A.; an analysis of tracer injections
- 1 January 1993
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Glaciology
- Vol. 39 (131) , 143-156
- https://doi.org/10.1017/s0022143000015793
Abstract
Tracers were injected into South Cascade Glacier to determine the flow condition and geometry of the subglacial water system. Results indicate that two distinct drainage basins on the glacier feed the two main streams flowing from the glacier. In the largest basin, two parallel drainage networks exist, one englacial and the other subglacial. The englacial system is an arboresecent network of conduits, whereas the subglacial system is a distributed flow system. Both systems connect to a single subglacial conduit which appears as a stream at the glacier’s terminus. The comparison between the travel time of the tracers and stream discharge indicated that the single conduit was pressurized in July and partly filled in August and September. To estimate the flow geometry (e.g. path length, flow depth and velocity), the advection-diffusion equation was formulated to express the water velocity as a function of water depth. Longitudinal dispersion of the tracer was calculated from the shear in longitudinal water velocity. Results indicate that the flow is very wide compared to its depth and that the path is sinuous. The estimated flow speed in the conduits is an order of magnitude larger than the measured speed through the glacier, indicating that other flow processes, probably englacial, route the water much more slowly. The other, smaller, basin drains the water from the surface to the subglacial distributed flow system. Based on the travel time of the individual concentration peaks, the water could be flowing through a linked-cavity system or interconnected bands of highly permeable debris separated by zones of less permeability.Keywords
This publication has 20 references indexed in Scilit:
- Quantitative tracing of the Maligne karst system, Alberta, CanadaJournal of Hydrology, 1988
- Glacier surge mechanism based on linked cavity configuration of the basal water conduit systemJournal of Geophysical Research, 1987
- Calculations of the critical shear stress for motion of uniform and heterogeneous sedimentsWater Resources Research, 1987
- RHODAMINE WT DYE LOSSES IN A MOUNTAIN STREAM ENVIRONMENT1Jawra Journal of the American Water Resources Association, 1983
- Simulation of solute transport in a mountain pool‐and‐riffle stream: A transient storage modelWater Resources Research, 1983
- Investigations of Glacier Hydrological Systems using Dye Tracer Techniques: Observations at Pasterzengletscher, AustriaJournal of Glaciology, 1983
- On the Water Channels of the Internal Drainage System of the Hintereisferner, Ötztal Alps, AustriaJournal of Glaciology, 1975
- General theory of water flow at the base of a glacier or ice sheetReviews of Geophysics, 1972
- Water Pressure in Intra- and Subglacial ChannelsJournal of Glaciology, 1972
- Dispersion of soluble matter in solvent flowing slowly through a tubeProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1953