The Internal Structure and Ice Crystallography of Seasonal Frost Mounds
Open Access
- 1 January 1985
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Glaciology
- Vol. 31 (108) , 157-162
- https://doi.org/10.1017/s0022143000006407
Abstract
The crystal character of the ice core within frost blisters supports the hypothesis that groundwater injection into residual zones of the active layer followed by rapid freezing is the primary growth mechanism for these features. The ice core is characterized by an upper zone of relatively small randomly arranged equigranular ice crystals which change with increasing depth to columnar anhedral crystals, commonly exceeding 200 mm in length, and with crystal diameters ranging between 25 and 35 mm. Petrofabric analyses show that thec-axis orientations are normal to crystal elongations, with crystal growth along the basal plane in ana-axis direction. These observations eliminate ice segregation as a possible growth mechanism, thereby distinguishing seasonal frost mounds from palsas.Keywords
This publication has 13 references indexed in Scilit:
- The groundwater hydraulics of seasonal frost mounds, North Fork Pass, Yukon TerritoryCanadian Journal of Earth Sciences, 1984
- Frost Blisters of the Bear Rock Spring Area near Fort Norman, N.W.T.ARCTIC, 1982
- Rupture of an ice mound near Cape Dorset, N.W.T.Canadian Geotechnical Journal, 1979
- Growth and decay of palsas and peat plateaus in the Macmillan Pass–Tsichu River area, Northwest Territories, CanadaCanadian Journal of Earth Sciences, 1979
- Frost mounds at Bear Rock, near Fort Norman, Northwest Territories, 1975–1976Canadian Journal of Earth Sciences, 1978
- The Origin of Massive Icy Beds in Permafrost, Western Arctic Coast, CanadaCanadian Journal of Earth Sciences, 1971
- Properties of a Wooded Palsa in Northern ManitobaArctic and Alpine Research, 1971
- The preferred orientation in the growth of ice from the meltJournal of Crystal Growth, 1967
- Crystal Fabric Studies on Emmons Glacier Mount Rainier, WashingtonThe Journal of Geology, 1951
- Introduction to Ice PetrofabricsThe Journal of Geology, 1951