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On a Doubly Nonlinear Parabolic Obstacle Problem Modelling Ice Sheet Dynamics
Author(s) -
N. Calvo,
Jesús Ildefonso Díaz Díaz,
J. Durany,
Emanuele Schiavi,
Carlos Vázquez
Publication year - 2003
Publication title -
siam journal on applied mathematics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.954
H-Index - 99
eISSN - 1095-712X
pISSN - 0036-1399
DOI - 10.1137/s0036139901385345
Subject(s) - obstacle problem , stefan problem , nonlinear system , obstacle , mathematics , mathematical analysis , degenerate energy levels , flow (mathematics) , boundary value problem , dimension (graph theory) , numerical analysis , boundary (topology) , classical mechanics , physics , geometry , political science , law , quantum mechanics , pure mathematics
This paper deals with the weak formulation of a free (moving) boundary problem arising in theoretical glaciology. Considering shallow ice sheet flow, we present the mathematical analysis and the numerical solution of the second order nonlinear degenerate parabolic equation modelling, in the isothermal case, the ice sheet non-Newtonian dynamics. An obstacle problem is then deduced and analyzed. The existence of a free boundary generated by the support of the solution is proved and its location and evolution are qualitatively described by using a comparison principle and an energy method. Then the solutions are numerically computed with a method of characteristics and a duality algorithm to deal with the resulting variational inequalities. The weak framework we introduce and its analysis (both qualitative and numerical) are not restricted to the simple physics of the ice sheet model we consider nor to the model dimension; they can be successfully applied to more realistic and sophisticated models related to other geophysical settings

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