Fractures as the main pathways of water flow in temperate glaciers
- 1 February 2005
- journal article
- Published by Springer Nature in Nature
- Vol. 433 (7026) , 618-621
- https://doi.org/10.1038/nature03296
Abstract
Understanding the flow of water through the body of a glacier is important, because the spatial distribution of water and the rate of infiltration to the glacier bottom is one control on water storage and pressure, glacier sliding and surging, and the release of glacial outburst floods. According to the prevailing hypothesis, this water flow takes place in a network of tubular conduits. Here we analyse video images from 48 boreholes drilled into the small Swedish glacier Storglaciären, showing that the glacier's hydrological system is instead dominated by fractures that convey water at slow speeds. We detected hydraulically connected fractures at all depths, including near the glacier bottom. Our observations indicate that fractures provide the main pathways for surface water to reach deep within the glacier, whereas tubular conduits probably form only in special circumstances. A network of hydraulically linked fractures offers a simple explanation for the origin and evolution of the englacial water flow system and its seasonal regeneration. Such a fracture network also explains radar observations that reveal a complex pattern of echoes rather than a system of conduits. Our findings may be important in understanding the catastrophic collapse of ice shelves and rapid hydraulic connection between the surface and bed of an ice sheet.Keywords
This publication has 26 references indexed in Scilit:
- Characterization of englacial channels by ground‐penetrating radar: An example from austre Brøggerbreen, SvalbardJournal of Geophysical Research, 2003
- Cold surface layer thinning on Storglaciären, Sweden, observed by repeated ground penetrating radar surveysJournal of Geophysical Research: Earth Surface, 2003
- Integrated hydrologic and hydrochemical observations of Hidden Creek Lake jökulhlaups, Kennicott Glacier, AlaskaJournal of Geophysical Research: Earth Surface, 2003
- Surface Melt-Induced Acceleration of Greenland Ice-Sheet FlowScience, 2002
- Borehole drainage and its implications for the investigation of glacier hydrology: experiences from Haut Glacier d'Arolla, SwitzerlandHydrological Processes, 2001
- The link between climate warming and break-up of ice shelves in the Antarctic PeninsulaJournal of Glaciology, 2000
- Englacial water distribution in a temperate glacier from surface and borehole radar velocity analysisJournal of Glaciology, 2000
- Tracer experiments and borehole observations in the over-deepening of Aletschgletscher, SwitzerlandAnnals of Glaciology, 1999
- Water flow through temperate glaciersReviews of Geophysics, 1998
- Fracture mechanics approach to penetration of surface crevasses on glaciersCold Regions Science and Technology, 1998