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Cryoplanation Terraces: Indicators of a Permafrost Environment

Published online by Cambridge University Press:  20 January 2017

Richard D. Reger
Affiliation:
R and M Consultants, Inc., P. O. Box 2630, Fairbanks, Alaska 99707 USA
Troy L. Péwé
Affiliation:
Department of Geology, Arizona State University, Tempe, Arizona 85281 USA

Abstract

Cryoplanation terraces are bedrock steps or terraces on ridge crests and hilltops. The tread or “flat” area is 10 to several hundred meters wide and long and slopes from 1 to 5° parallel to the ridge crests. Terrace scarps may be from 1 to 75 m high. Terraces are cut into all bedrock types and are best developed on closely jointed, fine-grained bedrock. The scarps and treads are covered with frost-rived rubble 1 to 2 m thick. The rubble on treads is perennially frozen at a depth of 1 to 2 m or less on sharp but inactive terraces in Alaska.

Cryoplanation terraces exist in many parts of the world in present or past periglacial environments. They occur chiefly in nonglaciated regions and near the general altitude of snowline. Cryoplanation terraces form by scarp retreat as the result of nivation. Surficial debris is removed across the terrace tread by mass-wasting. Terrace morphology depends mainly upon climate, bedrock type, and terrace orientation.

No climatic data are available from active terraces. Indirect evidence indicates that climatic requirements include low snowfall and cold summer temperatures. Shallow permafrost is necessary to provide moisture and a base for mass movement as well as a base for nivation.

Hundreds of sharp but inactive terraces occur in some areas in Alaska where the summer temperature is colder than 10°C. When these terraces were active, temperatures were colder. Recent work in Alaska indicates that terraces were active in some areas when the mean July temperature was about 4°C. The mean annual air temperature probably was in the neighborhood of -12°C or colder.

Type
Research Article
Copyright
University of Washington

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References

Boch, S.G., Krasnov, I.I., (1943). O nagornykh terrasakh i drevnikh poverkhnostyakh vyravnivaniya na Urale i svyazannykh s nimi problemakh Altiplanation terraces and old planation surfaces in the Ural Mountains and associated problems. Izvest. Vsesoyuznogo Geogr. Obshch 75, 1425.Google Scholar
Boch, S.G., Krasnov, I.I., (1946). K voprosu o granice maksimalnogo chetvertichnogo oledeneniya v predelakh Uralskogo khrebta v svazi s nabludeniyami nad nagornymi terrasami On the problem of the limit of the maximum Quaternary glaciation within the Ural Range as revealed by the study of altiplanation terraces. Byull. Chetvert. Kom. Akad. Nauk SSSR No. 8 4672.Google Scholar
Boch, S.G., Krasnov, I.I., (1951). Proces golcovogo vyravnivaniya i obrazovanie nagornykh terras The process of goletz-planation and the formation of altiplanation terraces. Priroda No. 5 2530.Google Scholar
Cairnes, D.D., (1912a). Differential erosion and equiplanation of Yukon and Alaska. Geol. Soc. America Bull. 23, 333348.CrossRefGoogle Scholar
Cairnes, D.D., (1912b). Some suggested new physiographic terms (equiplanation, deplanation, and aplanation). American Journal of Sci. 34, 7587.CrossRefGoogle Scholar
Coulter, H.W., Hopkins, D.M., Karlstrom, T.N.V., Péwé, T.L., Wahrhaftig, Clyde, Williams, J.R., (1965). Extent of glaciations in Alaska. U.S. Geol. Survey Misc. Geol. Inv. Map I-415, scale 1 : 2,500,000 .Google Scholar
Czudek, T., Demek, J., (1970). Pleistocene cryopedimentation in Czechoslovakia. Acta Geogr. Lodz. No. 24 101108.Google Scholar
Demek, J., (1964). Altiplanation terraces in Czechoslovakia and their origin. Journal of the Czechoslovakian Geographical Society 5565Suppl. 20th Intern. Geogr. Congr., London.Google Scholar
Demek, J., (1967). Quantitative research of slope development in Czechoslovakia. Macar, P. L'Evolution des Versants Symposium Intern. Geogr. Union 111122Liege.Google Scholar
Demek, J., (1969). Cryoplanation terraces, their geographical distribution, genesis and development. Acad. Nakladatelstvi Ceskoslovenské Akademie Ved 79, No. 4 180.Google Scholar
Eakin, H.M., (1916). The Yukon-Koyukuk region, Alaska. U.S. Geol. Survey Bull. 631 .Google Scholar
Foster, H.L., (1967). Geology of the Mount Fairplay area, Alaska. U.S. Geol. Survey Bull. 1241-B .Google Scholar
Foster, H.L., (1969). Reconnaissance geology of the Eagle A-1 and A-2 quadrangles, Alaska. U.S. Geol. Survey Bull. 1271-G .Google Scholar
Guilcher, A., (1950). Nivation, cryoplanation et solifluction quaternaires dans les collines de Bretagne occidentale et du Nord du Devonshire Quaternary nivation, cryoplanation and solifluction in the hills of western Brittany and northeastern Devonshire. Rev. Geomorph. Dyn. No. 2 5378.Google Scholar
Lyubimov, B.P., (1967). On the mechanism of nival processes. Popov, A.I. Podzemnyy led Underground ice Moscow University Publishing House Moscow 158175Part III.Google Scholar
Péwé, T.L., (1966). Ice-wedges in Alaska—classification, distribution, and climatic significance. Proc., Intern. Permafrost Conf. NAS-NRC Publ. No. 1287 7681.Google Scholar
Péwé, T.L., (1970). Altiplanation terraces of early Quaternary age near Fairbanks, Alaska. Acta Geogr. Lodz. No. 24 357363.Google Scholar
Péwé, T.L., (1975). Quaternary geology of Alaska. U.S. Geol. Survey Prof. Paper 835 .Google Scholar
Péwé, T.L., Burbank, Lawrence, Mayo, L.R., (1967). Multiple glaciation of the Yukon-Tanana Upland, Alaska. U.S. Geol. Survey Misc. Geol. Inv. Map I-507 .Google Scholar
Péwé, T.L., Reger, R.D., (1972). Modern and Wisconsinan snowlines in Alaska. Proc. XXIV Intern. Geol. Congr. Vol. 12, 187197.Google Scholar
Péwé, T.L., Reger, R.D., (1974). Cryoplanation terraces-indicators of permafrost environment (abs). Geol. Soc. America Annual Mtg. Vol. 6, 911No. 7.Google Scholar
Popov, A.I., (1960). Periglacial formations under conditions of predominant denudation. Markov, K.K., Popov, A.I. Periglacial phenomena on the territory of the U.S.S.R. Moscow Univ Moscow 2836.Google Scholar
Prest, V.K., Grant, D.R., Rampton, V.N., (1968). Glacial map of Canada: Geol. Survey Canada Map 1253 A .Google Scholar
Prindle, L.M., (1905). The gold placers of the Fortymile, Birch Creek and Fairbanks regions. U.S. Geol. Survey Bull. 251 .Google Scholar
Reger, R.D., (1975). Cryoplanation terraces of interior and western Alaska. Ph.D. Dissertation Arizona State University.Google Scholar
Vtyurina, E.A., (1966). Kriogennye sklonovye terrasy Cryogenic slope terraces. Science Publishing Firm Moscow .Google Scholar
Wahrhaftig, C., (1965). Physiographic divisions of Alaska. U.S. Geol. Survey Prof. Paper 482 .Google Scholar
Waters, R.S., (1962). Altiplanation terraces and slope development in Vest-Spitsbergen and south-west England. Biul. Perygl. No. 11 89101.Google Scholar
Yeend, W., (1971). Glaciation of the Ray Mountains, central Alaska. Geological Survey Research 1971 U.S. Geol. Survey Prof. Paper 750-D D122D126.Google Scholar