On the physical basis for the creep of ice: the high temperature regime

Author:

Cole D.M.

Abstract

AbstractThis work quantifies the increased temperature sensitivity of the constitutive behavior of ice with proximity to the melting point in terms of dislocation mechanics. An analysis of quasistatic and dynamic cyclic loading data for several ice types leads to the conclusion that high temperature (e.g. T ≥ −8°C) behavior is the result of a thermally induced increase in the number of mobile dislocations rather than an increase in the activation energy of dislocation glide or the introduction of a new deformation mechanism. The relationship between dislocation density and temperature is quantified and the model is shown to adequately represent the published minimum creep rate vs stress data for isotropic granular freshwater ice for −48 ≤ T ≤ −0.01°C.

Publisher

Cambridge University Press (CUP)

Subject

Earth-Surface Processes

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2. Dynamic recrystallization and grain boundary migration in B2 FeAl

3. The tertiary creep of polycrystalline ice: experimental evidence for stress-dependent levels of strain-rate enhancement

4. Recent progress in dislocation studies using bias stress experiments;Gremaud;Journal de Physique Colloques,1985

5. Modeling the cyclic loading response of sea ice

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