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A new algorithm to simulate the dynamics of a glacier: theory and applications
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Abstract
- We propose a novel Eulerian algorithm to compute the changes of a glacier geometry for given mass balances. The surface of a glacier is obtained by solving a transport equation for the volume of fluid (VOF). The surface mass balance is taken into account by adding an interfacial term in the transport equation. An unstructured mesh with standard stabilized finite elements is used to solve the non-linear Stokes problem. The VOF function is computed on a structured grid with a high resolution. The algorithm is stable for Courant numbers larger than unity and conserves mass to a high accuracy. To demonstrate the potential of the algorithm, we apply it to reconstructed Late-glacial states of a small valley glacier, Vadret Muragl, in the Swiss Alps.
- Subjects :
- 010506 paleontology
010504 meteorology & atmospheric sciences
Computational fluid dynamics
01 natural sciences
Physics::Geophysics
Physics::Fluid Dynamics
Glacier mass balance
symbols.namesake
Volume of fluid method
Free-Surface
Ice-Flow
Physics::Atmospheric and Oceanic Physics
0105 earth and related environmental sciences
Earth-Surface Processes
business.industry
3-Dimensional Numerical-Model
Eulerian path
Function (mathematics)
Finite element method
Euler equations
symbols
business
Convection–diffusion equation
Algorithm
Geology
Switzerland
Subjects
Details
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- OpenAIRE
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- ResearcherID
- Accession number :
- edsair.doi.dedup.....c8319255a405d3c00a8cff0224bdda4a