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United States sea ice physics project, 1954–59

Published online by Cambridge University Press:  27 October 2009

Extract

In 1954 the Geophysics Research Directorate of the Air Force Cambridge Research Center (AFCRC), at the request of Northeast Air Command, United States Air Force, organized a study of the physical properties, growth, and bearing capacity of sea ice. The object of the study was to gain information about the conditions under which various aircraft and vehicles could operate on sea ice, for supply and rescue purposes. The Navy Hydrographic Office (NHO) and the Snow, Ice and Permafrost Research Establishment (SIPRE) of the Army Corps of Engineers also took part in the project. The spheres of interest of each organization were as follows: AFCRC, the application of geophysical and crystallographic methods to the study of sea ice; NHO, the details of the relations between meteorological conditions and the growth rate and general physical properties of sea ice; and SIPRE, the variation of the strength of sea ice as determined by small-scale field tests, and the application of this information toward an analysis of the bearing capacity of sea ice.

Type
Articles
Copyright
Copyright © Cambridge University Press 1959

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References

Anderson, D. L. A model for determining sea ice properties. United States National Academy of Sciences—National Research Council. Publication No. 598, 1958.Google Scholar
Anderson, D. L.Preliminary results and review of sea ice elasticity and related studies. Transactions of the Engineering Institute of Canada, Vol. 2, No. 3, 1958, p. 116–22.Google Scholar
Assur, A. Airfields on floating ice sheets, for routine and emergency operations. Snow, Ice and Permafrost Research Establishment Report No. 36, 1956.Google Scholar
Assur, A. Composition of sea ice and its tensile strength. United States National Academy of Sciences—National Research Council. Publication No. 598, 1958.Google Scholar
Butkovich, T. R. On the mechanical properties of sea ice, Thule, Greenland, 1957. Snow, Ice and Permafrost Establishment Research Report No. 54, 1958.Google Scholar
Butkovich, T. R.Recommended standards for small-scale ice strength tests. Transactions of the Engineering Institute of Canada, Vol. 2, No. 3, 1958, p. 112–15.Google Scholar
Butkovich, T. R. Strength studies of sea ice. Snow, Ice and Permafrost Research Establishment, Research Paper 20, 1956.Google Scholar
Weekes, W. F. The structure of sea ice: a progress report. National Academy of Sciences—National Research Council. Publication No. 598, 1958.Google Scholar
Weekes, W. F. and Anderson, D. L.An experimental study of the strength of young sea ice. Transactions of the American Geophysical Union, Vol. 39, No. 4, 1958, p. 641–47.Google Scholar
Weekes, W. F.Sea ice thrust structures. Journal of Glaciology, Vol. 3, No. 23, 1958, p. 173–5.CrossRefGoogle Scholar
Weekes, W. F. and Lee, O. S.Observations on the physical properties of sea ice at Hopedale, Labrador. Arctic, Vol. 11, No. 3, 1958, p. 135–55.Google Scholar
Wilson, J. T. Moving loads on floating ice sheets. University of Michigan, Research Institute, Project 2432–8-F, 1958.Google Scholar