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Application of satellite images for monitoring snow-line in the Yukon and Northwest Territories

Published online by Cambridge University Press:  27 October 2009

Extract

Each year, more and more of Canada's vast northern territories are being explored in the search for untapped mineral resources. But the area is covered with snow for seven to ten months a year, which hampers most activities connected with mineral exploration. Snow cover also affects changes in albedo and temperature and hydrologic forecasting. The surface hydrology in most areas is only active for two to five months a year. Historically, snow hydrologists have been limited to the use of ground source measurements for estimating the spatial and temporal variability of snow cover. In the Yukon and Northwest Territories hydrometeorological stations are few and tend to be clustered around settlements. Moreover, the ground source data are subject to error and do not necessarily provide a complete picture of current conditions. The synoptic view provided by satellite images presents an economical way to monitor the retreat and advance of the snow-line and of mapping snow cover in remote and sparsely populated areas. The information may eventually be useful for extrapolating conventional ground source data more effectively over the entire Yukon and Northwest Territories.

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Articles
Copyright
Copyright © Cambridge University Press 1979

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References

Barnes, J. C. and Bowley, C. J. 1974. Handbook of techniques for satellite mow mapping. Concord, Mass, Environmental Research and Technology Inc. (ERT Document No 0407A.)Google Scholar
Barnes, J. C.and others. 1974. The application of ERTS-I imagery to mapping snow cover in the United States. Greenbelt, Maryland, NASA. (ERTS Document 9407F.)Google Scholar
Barnes, J. C. and Smallwood, M. D. 1975. Synopsis of current satellite snow mapping techniques, with emphasis on the application of near-infrared data. In: Rango, A.ed. Operational applications of satellite snowcover observations. Washington, DC, NASA, p 199213. (NASA SP-391.)Google Scholar
Ferguson, H. L. and Lapezak, S. 1977. Satellite imagery analysis of snow cover in the Saint John and Souris river basins. In: Proceedings of Fourth Canadian Symposium on Remote Sensing, Quebec, May, 1977. Ottawa, Canadian Aeronautics and Space Institute, p 126–42.Google Scholar
Foster, J. L. and Rango, A. 1975. A method for improving the location of the snowline in forested areas using satellite imagery. Greenbelt, Maryland, NASA. (Document X-910–75–41.)Google Scholar
Golding, D. L. 1974. Snow cover and melting snow from ERTS imagery. The Canadian Surveyor, Vol 28, No 2, p 128–34.CrossRefGoogle Scholar
Gregory Geoscience Ltd. 19751977. Snow and ice conditions in the Yukon and NWT. Ottawa, Gregory Geoscience Ltd (weekly charts).Google Scholar
Hofer, R. and Fuller, G. 1977. A study of snowmelt progression from Winnipeg to the Arctic islands using ERTS photographs. In: Proceedings of Fourth Canadian Symposium on Remote Sensing, Quebec, May 1977. Ottawa, Canadian Aeronautics and Space Institute, p 143–45.Google Scholar
Kerbes, R. H. and Moore, H. D. 1975. Use of current satellite imagery to predict the nesting success of Lesser Snow Geese. Workshop on Remote Sensing of Wildlife, 18–20 November 1975, Quebec. Quebec, Ministry of Tourism.Google Scholar
McClain, E. P. and Baker, D. R. 1969. Experimental large scale snow and ice mapping with composite minimum brightness charts. Washington, DC, NESC. (ESSA Technical Memorandum, NESCTM-12.)Google Scholar
Meier, M. F. 1973. Evaluation of ERTS imagery for mapping and detection of changes of snow cover on land and on glacier. In: Freden, S. C. and Becker, M.A.eds) Symposium on significant results obtained from the ERTS—I. Washington, DC, NASA, p 869–78. (NASA SP–327.)Google Scholar
Nasa (National Aeronautic and Space Administration). 1975. In: Rango, A.ed. Operational applications of satellite snowcover observations. Washington, DC, NASA. (NASA SP–391.)Google Scholar
Polar Record. 1976. Satellite weather forecasts for northern Canada. Polar Record, Vol 18, No 114, p 306–07.CrossRefGoogle Scholar
Rango, A. 1975. Applications of remote sensing to watershed management. Greenbelt, Maryland, NASA. (Technical Information Division Code 250.)Google Scholar
Rango, A. and Itten, K. I. 1976. Satellite potentials in snowcover monitoring and runoff prediction. Nordic Hydrology, Vol 7, p 209–30.CrossRefGoogle Scholar
Rango, A. and Salomonson, V. V. 1977. Seasonal streamflow estimation in the Himalayan region employing meteorological satellite snow cover observations. Water Resources Research, Vol 13, No 1, p 109–12.CrossRefGoogle Scholar
Wiesnet, D. R. and McGinnis, D. F. 1973. Snow-extent mapping and lake ice studies using ERTS—I MSS together with NOAA–2 VHRR. Third ERTS—I Symposium, Vol 1, p 9951009. (ASA SP-351.),Google Scholar
Wiesnet, D. R. 1974. The role of satellites in snow and ice measurements. Washington, DC, NOAA-NESS. (NOAA Technical Memorandum NESS-58.)Google Scholar