This paper stems from the interest in the numerical study of the evolu- tion of Boulder Clay Glacier in Antarctica, whose morphological characteristics have required the revision of the basis for most of the recent mathematical models for glacier dynamics. Bearing in mind the need to minimize the complexity of the mathematical model, we have selected the constitutive equation of rock glacier ice recently presented by two of the authors. Here, this model is extended in order to include temperature effects. In addition to the effects of climate change, it is also necessary to take into consideration the non-negligible level of melting due to tem- perature changes induced by normal stresses arising from the interactions of ice and the rock fragments that are within the rock glacier. In fact, local phase transition that occurs leading to the release of water implies significant modifications of ice viscosity, the main intrinsic factor driving the flow. In this paper we derive the model that describes the flow of rock glaciers that takes into consideration the effects of temperature and the normal stresses generated by the ice and rock fragments interactions.

Mathematical modeling of rock glacier flow with temperature effects

Daniela Mansutti
;
2020

Abstract

This paper stems from the interest in the numerical study of the evolu- tion of Boulder Clay Glacier in Antarctica, whose morphological characteristics have required the revision of the basis for most of the recent mathematical models for glacier dynamics. Bearing in mind the need to minimize the complexity of the mathematical model, we have selected the constitutive equation of rock glacier ice recently presented by two of the authors. Here, this model is extended in order to include temperature effects. In addition to the effects of climate change, it is also necessary to take into consideration the non-negligible level of melting due to tem- perature changes induced by normal stresses arising from the interactions of ice and the rock fragments that are within the rock glacier. In fact, local phase transition that occurs leading to the release of water implies significant modifications of ice viscosity, the main intrinsic factor driving the flow. In this paper we derive the model that describes the flow of rock glaciers that takes into consideration the effects of temperature and the normal stresses generated by the ice and rock fragments interactions.
2020
Istituto Applicazioni del Calcolo ''Mauro Picone''
Inglese
Cannarsa, Piermarco, Mansutti, Daniela, Provenzale, Antonello
38
Mathematical Approach to Climate Change and its Impacts - MAC2I
137
149
13
978-3-030-38668-9
https://doi.org/10.1007/978-3-030-38669-6_4
Springer
Cham, Heidelberg, New York, Dordrecht, London
SVIZZERA
Esperti anonimi
mathematical modelling;
ice
moraines
ice flow
Internazionale
Stampa
4
02 Contributo in Volume::02.01 Contributo in volume (Capitolo o Saggio)
268
restricted
Kannan, Krishna; Mansutti, Daniela; R Rajagopal, Kumbakonam; Urbini, Stefano
info:eu-repo/semantics/bookPart
   ENIGMA: modEllizzazione geofisica del Boulder Clay Glacier (Northern Foothills) e studio bIologico e bioGeochimico preliMinare dei suoi laghi glaciAli
   ENIGMA
   Piano Nazionale Ricerca Antartide
   101.085,00 euro
   PNRA16_00121
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/360634
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