Simulation parameters and outputs for a rigorous approach to the specific surface area evolution in snow during temperature gradient metamorphism

In the associated study [1], two time-lapse temperature gradient metamorphism series of three-dimensional micro-computed tomography images of snow (obtained by [2]) have been used to model the decrease of specific surface area (SSA) over time based on the pore-scale physics. We conducted finite element simulations of one-way coupled heat and mass diffusion in order to estimation the spatial pattern of water vapor deposition and sublimation, which controls the evolution of the SSA over time. We notably studied the influence of the condensation coefficient, a key but poorly constrained physical parameter.

This dataset provides the parameters used for the mesh generation and the finite element simulations. It also includes the ice fraction, specific surface area per unit volume and surface average of mean curvature and vapor field obtained as outputs from the mesh process and the simulations.

[1]: Braun, A., Fourteau, K., and Löwe, H.: A rigorous approach to the specific surface area evolution in snow during temperature gradient metamorphism, EGUsphere [preprint], https://doi.org/10.5194/egusphere-2023-1947, 2023. [2]: Pinzer, B. R., Schneebeli, M., and Kaempfer, T. U.: Vapor flux and recrystallization during dry snow metamorphism under a steady temperature gradient as observed by time-lapse micro-tomography, The Cryosphere, 6, 1141–1155, https://doi.org/10.5194/tc-6-1141-2012, 2012.

Funding Information:

This work was supported by:
  • Swiss National Science Fondation (link) (Grant/Award: 200020_178831)

Citation:

Braun, Anna; Fourteau, Kévin; Löwe, Henning (2024). Simulation parameters and outputs for a rigorous approach to the specific surface area evolution in snow during temperature gradient metamorphism. EnviDat. doi:10.16904/envidat.492.

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Data and Resources

Metadata

Field Values
DOI 10.16904/envidat.492
Publication State Published
Authors
  • Email: anna.braunfoo(at)slf.ch ORCID: 0000-0002-2357-9452 Given Name: Anna Family Name: Braun Affiliation: WSL Institute for Snow and Avalanche Research SLF
  • Email: kevin.fourteaufoo(at)meteo.fr ORCID: 0000-0002-9905-2446 Given Name: Kévin Family Name: Fourteau Affiliation: WSL Institute for Snow and Avalanche Research SLF
  • Email: henning.loewefoo(at)slf.ch ORCID: 0000-0001-7515-6809 Given Name: Henning Family Name: Löwe Affiliation: WSL Institute for Snow and Avalanche Research SLF
Contact Person Given Name: Anna Family Name: Braun Email: anna.braunfoo(at)slf.ch
Subtitles
Publication Publisher: EnviDat Year: 2024
Dates
  • Type: Created Date: 2022-01-01 End Date: 2023-12-31
Version
Type dataset
General Type Dataset
Language
Location
Content License ODbL with Database Contents License (DbCL)    [Open Data]
Last Updated March 7, 2024, 05:48 (UTC)
Created March 6, 2024, 19:22 (UTC)