Discussion of “Tertiary Creep Model for Frozen Sands” by John M. Ting (July, 1983)
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References
1.
Assur, A., “Some Promising Trends in Ice Mechanics,” Physics and Mechanics of Ice, P. Tryde, ed., Proceedings, IUTAM Symposium, Springer‐Verlag, Copenhagen, Denmark, 1980, pp. 1–15.
2.
Fish, A. M., “An Acoustic and Pressure Meter Method for Investigation of the Rheological Properties of Ice,” thesis presented to the Arctic and Antarctic Research Institute, at Leningrad, U.S.S.R., in 1976, in partial fulfillment of the requirements for the degree of Candidate of Science, translated from Russian, U.S. Army Cold Regions Research and Engineering Laboratory, Hanover, N.H., 1978, 205 p.
3.
Fish, A. M., “Mechanical Properties of Frozen Soils,” research proposal, Contract No. DAAG 29‐77‐C‐0016, Part B, Massachusetts Institute of Technology, Cambridge, Mass., 1979.
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Fish, A. M., “Kinetic Nature of the Long‐Term Strength of Frozen Soils,” Proceedings of the Second International Symposium on Ground Freezing, Norwegian Institute of Technology, Trondheim, Norway, 1980, pp. 95–108.
5.
Fish, A. M., “Comparison of U.S.S.R. Codes and U.S. Army Manual for Design of Foundations on Permafrost,” Journal of Cold Regions Science and Technology, Vol. 8, 1983, pp. 3–24.
6.
Fish, A. M., “Thermodynamic Model of Creep at Constant Stress and Constant Strain Rate,” Journal of Cold Regions Science and Technology, in press.
7.
Zaretskiy, Yu. K., and Vyalov, S. S., “Structural Mechanics of Clayey Soils,” Soil Mechanics and Foundation Engineering, Vol. 8, No. 3, Moscow, U.S.S., translated from Russian by Consultants Bureau, N.Y., 1971, pp. 153–160.
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Copyright © 1984 ASCE.
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Published online: Sep 1, 1984
Published in print: Sep 1984
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