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Northward migration of permafrost along the Mackenzie highway and climatic warming

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Abstract

Based on two field surveys of permafrost distribution, conducted 26 years apart, along the Mackenzie Highway south of Great Slave Lake, Canada, the southern limit of the sporadic discontinuous permafrost zone in the region has migrated northward by about 120 km. To substantiate that the disappearance of perennial frozen ground is largely caused by climatic warming, a detailed trend analysis of monthly air temperature records from nine weather stations was performed using the non-parametric Kendall's test. The results show that the region experienced a general warming trend for the period 1949–1989 and warming is more prominent in the minimum than the maximum temperature series. From estimates of the magnitude of warming trends on a monthly basis, the resultant increase in mean annual air temperature could readily lead to the observed northward migration of permafrost.

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References

  • Barry, R. G.: 1985, ‘The Cryosphere and Climate Change’, in MacCracken, M. C. and Luther, F. M. (eds.),Detecting the Climatic Effects of Increasing Carbon Dioxide, U.S. Dept. of Energy, Washington, DC., pp. 109–148.

    Google Scholar 

  • Berryman, D., Bobee, B., Cluis, D., and Haemmerli, J.: 1988, ‘Nonparametric Tests for Trend Detection in Water Quality Time Series’,Water Resour. Bull. 24, 545–556.

    Google Scholar 

  • Brown, R. J. E.: 1964,Permafrost Investigations on the Mackenzie Highway in Alberta and Mackenzie District, Technical Paper No. 175, Division of Building Research, National Research Council, Canada.

    Google Scholar 

  • Brown, R. J. E.: 1978, ‘Permafrost’, inHydrological Atlas of Canada, Ottawa, Department of Fisheries and Environment, Plate 32.

  • Dyke, L.: 1988, ‘Permafrost Aggradation along an Emergent Coast, Churchill, Manitoba’, in Senneset, K. (ed.),Permafrost, Proceedings: Fifth International Conference on Permafrost, Trondheim, Norway, August 1988, Volume 2, pp. 138-142.

  • French, H. M.: 1989, ‘Cold Climate Processes’, in Fulton, R. J. (ed.),Quaternary Geology of Canada and Greenland, Geological Survey of Canada, no. 1 (also Geological Society of America,The Geology of North America, v. K-1).

  • Geiger, R.: 1966,The Climate near the Ground (English translation), Harvard University Press, Cambridge.

    Google Scholar 

  • Goodrich, L. E.: 1982, ‘The Influence of Snow Cover on the Ground Thermal Regime’,Can. Geotech. J. 19, 421–432.

    Google Scholar 

  • Goudie, A.: 1983,Environmental Change, Clarendon Press, Oxford.

    Google Scholar 

  • Gullet, D., Vincent, L., and Malone, L.: 1991,Results of Homogeneity Testing of Monthly Temperature Series - Application of Multiphase Regression Model with Mathematical Change Points, Unpublished manuscript, Canada Climate Centre Report 91-10.

  • Haeberli, W.: 1985,Creep of Mountain Permafrost: Internal Structure and Flow of Alpine Rock Glaciers, Pub. No. 77, Versuchsanstalt für Wasserbau, Hydrologie und Glaziologie, Zürich, Switzerland.

    Google Scholar 

  • Haeberli, W.: 1990, ‘Glacier and Permafrost Signals of 20th-Century Warming’, Proceedings, Symposium on Ice and Climate, 21–25 August 1989, Seattle, Washington,Ann. Glaciol. 14, 99–101.

    Google Scholar 

  • Harris, S. A.: 1986, ‘Permafrost Distribution, Zonation and Stability along the Eastern Ranges of the Cordillera of North America’,Arctic 39, 29–38.

    Google Scholar 

  • Hirsch, R. M., Slack, J. R., and Smith, R. A.: 1982, ‘Techniques of Trend Analysis for Monthly Water Quality Data’,Water Resour. Res. 18, 107–121.

    Google Scholar 

  • Jones, P. D., Wigley, T. M. L., and Wright, P. B.: 1986, ‘Global Temperature Variations between 1861 and 1984’,Nature 322, 430–434.

    Google Scholar 

  • Kane, R. P. and Teixeira, N. R.: 1990, ‘Power Spectrum Analysis of the Time-Series of Annual Mean Surface Air Temperatures’,Clim. Change 17, 121–130.

    Google Scholar 

  • Kendall, M. G.: 1975,Rank Correlation Methods, Charles Griffin, London.

    Google Scholar 

  • Kumar, K. R. and Hingane, L. S.: 1988, ‘Long-Term Variations of Surface Air Temperatures at Major Industrial Cities of India’,Clim. Change 13, 287–307.

    Google Scholar 

  • Kwong, Y. T. J.: 1990, ‘Degradation of Permafrost along the Mackenzie Highway: Causes and Effects’, The Geological Society of America 1990 Annual Meeting, Dalls,Abstracts with Programs, Vol.22, No. 7, p. A19.

    Google Scholar 

  • Lachenbruch, A. H. and Marshall, B. V.: 1986, ‘Changing Climate: Geothermal Evidence from Permafrost in the Alaskan Arctic’,Science 234, 689–696.

    Google Scholar 

  • Lettenmaier, D. P., Hooper, E. R., Wagoner, C., and Faris, K. B.: 1991, ‘Trends in Stream Quality in the Continental United States, 1978–1987’,Water Resour. Res. 27, 327–339.

    Google Scholar 

  • Levesque, R., Allard, M., and Seguin, M. K.: 1988, ‘Regional Factors of Permafrost Distribution and Thickness, Hudson Bay Coast, Quebec, Canada’, in Senneset, K. (ed.),Permafrost, Proceedings: Fifth International Conference on Permafrost, Trendheim, Norway, August 1988, Volume2, 199-204.

  • Linell, K. A.: 1973, ‘Long Term Effects of Vegetation Cover on Permafrost Stability in an Area of Discontinuous Permafrost’,Permafrost: The North American Contribution to the Second International Conference, Washington, DC, pp. 688-693.

  • Livezey, R. E. and Chen, W. Y.: 1983, ‘Statistical Field Significance and Its Determination by Monte Carlo Techniques’,Mon. Wea. Rev. 11, 46–59.

    Google Scholar 

  • Mann, H. B.: 1945, ‘Non-Parametric Tests Against Trend’,Econometrica 13, 245–259.

    Google Scholar 

  • Smith, M.: 1986, ‘The Significance of Climate Change for the Permafrost Environment’, Proceedings:Impact of Climatic Change on the Canadian Arctic, Orillia, March 3–5 1986, pp. 67-81.

  • Smith, R. A., Alexander, R. B., and Wolman, M. G. G.: 1987, ‘Water Quality Trends in the Nation's Rivers’,Science 235, 1606–1615.

    Google Scholar 

  • Stuart, R. A., Etkin, D. A., and Judge, A. S.: 1991,Recent Observations of Air Temperature and Snow Depth in the Mackenzie Valley Area and Their Implications on the Stability of Permafrost Layers, Unpublished manuscript, Canadian Climate Centre, Report No. 91–2.

  • van Belle, G. and Hughes, J. P.: 1984, ‘Nonparametric Tests for Trend in Water Quality’,Water Resour. Res. 20, 127–136.

    Google Scholar 

  • Vincent, L.: 1990,Time Series Analysis, a Method for Homogeneity Testing of Monthly Temperature Series Summary Report, Unpublished manuscript, available at Climate Services Division, Canadian Climate Centre, AES, Downsview.

  • Wood, Jr., F. B.: 1988, ‘The Need for Systems Research on Global Climate Change’,Syst. Res. 5, 225–240.

    Google Scholar 

  • Zetterqvist, L.: 1991, ‘Statistical Estimation and Interpretation of Trends in Water Quality Time Series’,Water Resour. Res. 27, 1637–1648.

    Google Scholar 

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Kwong, Y.T.J., Gan, T.Y. Northward migration of permafrost along the Mackenzie highway and climatic warming. Climatic Change 26, 399–419 (1994). https://doi.org/10.1007/BF01094404

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  • DOI: https://doi.org/10.1007/BF01094404

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