Water Pressure in Intra- and Subglacial Channels
Open Access
- 1 January 1972
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Glaciology
- Vol. 11 (62) , 177-203
- https://doi.org/10.1017/s0022143000022188
Abstract
Water flowing in tubular channels inside a glacier produces frictional heat, which causes melting of the ice walls. However the channels also have a tendency to close under the overburden pressure. Using the equilibrium equation that at every cross-section as much ice is melted as flows in, differential equations are given for steady flow in horizontal, inclined and vertical channels at variable depth and for variable discharge, ice properties and channel roughness. It is shown that the pressure decreases with increasing discharge, which proves that water must flow in main arteries. The same argument is used to show that certain glacier lakes above long flat valley glaciers must form in times of low discharge and empty when the discharge is high, i.e. when the water head in the subglacial drainage system drops below the lake level. Under the conditions of the model an ice mass of uniform thickness does not float, i.e. there is no water layer at the bottom, when the bed is inclined in the down-hill direction, but it can float on a horizontal bed if the exponentnof the law for the ice creep is small. It is further shown that basal streams (bottom conduits) and lateral streams at the hydraulic grade line (gradient conduits) can coexist. Time-dependent flow, local topography, ice motion, and sediment load are not accounted for in the theory, although they may strongly influence the actual course of the water. Computations have been carried out for the Gornergletscher where the bed topography is known and where some data are available on subglacial water pressure.Keywords
This publication has 11 references indexed in Scilit:
- Changes in the Behaviour of the Unteraargletscher in the Last 125 YearsJournal of Glaciology, 1970
- Water lubrication mechanism of glacier surgesCanadian Journal of Earth Sciences, 1969
- General Theory of Subglacial Cavitation and Sliding of Temperate GlaciersJournal of Glaciology, 1968
- Hydrometeorologische Ergebnisse aus Abflußmessungen im Bereich des Hintereisferners (Ötztaler Alpen) in den Jahren 1957 bis 1959Archives for Meteorology Geophysics and Bioclimatology Series A, 1966
- Two Self-Dumping Ice-Dammed Lakes in British ColumbiaGeographical Review, 1965
- The Theory of Glacier SlidingJournal of Glaciology, 1964
- Water Pressure under a GlacierJournal of Glaciology, 1964
- Glacier Dammed Lakes in NorwayNorsk Geografisk Tidsskrift - Norwegian Journal of Geography, 1956
- The Stability of Ice-Dammed Lakes and other Water-Filled Holes in GlaciersJournal of Glaciology, 1954
- The flow law of ice from measurements in glacier tunnels, laboratory experiments and the Jungfraufirn borehole experimentProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1953