SNOWISO model snow surface and firn core simulations at Dome C, East Antarctica (EPICA Dome C ice core drilling site)

Open data API in a single place

Provided by Zenodo

Get early access to SNOWISO model snow surface and firn core simulations at Dome C, East Antarctica (EPICA Dome C ice core drilling site) API!

Let us know and we will figure it out for you.

Dataset information

Country of origin
Updated
2025.09.16 00:00
Created
2025.09.15
Available languages
English
Keywords
Quality scoring

Dataset description

This model dataset includes SNOWISO v3 snowpack simulations of the stable water isotopes (δ18O, δD, d-excess) and is the result of snow surface and snowpack simulations in: Ollivier, I., Steen-Larsen, H.C., Dietrich, L.J., Cauquoin, A., Stenni, B., Werner, M., and Landais, A. (submitted). Post-depositional Processes Alter the Seasonal and Multi-decadal Water Isotopic Records in Antarctic Snow and Firn. Journal of Geophysical Research: Atmospheres. This model dataset consists of different simulation results, gathered in three folders: sensitivity_tests.zip: contains 38 csv files with the results of the model sensitivity tests on the choice of the formulations for the ice-vapor equilibrium fractionation coefficients (alphas), the choice of the model parameter zsc, and the choice of the kinetic fractionation coefficient (k18O). Files "ST_alphas_Ellehoj_zsc_xx.csv" contain the results of the simulations performed with alphas from Ellehøj et al., 2013 (https://doi.org/10.1002/rcm.6668); files "ST_alphas_MMN_zsc_xx.csv" contain the results of the simulations performed with alphas from Majoube, 1970 (https://doi.org/10.1038/2261242a0) and Merlivat and Nief, 1967 (https://doi.org/10.3402/tellusa.v19i1.9756). The last part of the file name indicates which zsc was used (from 0.01 to 0.1 m, one file / zsc). The parameter k18O varies from 0 to 0.008 (one column / k18O, see columns description below). In each file, the column "datetime" contains the age of each snowpack layer; the columns "z_xx" contains the depth of each snowpack layer; the columns "d18O_xx" contains the δ18O composition of each snowpack layer; the columns "dD_xx" contains the δD composition of each snowpack layer; and the columns "dxs_xx" contains the d-excess composition of each snowpack layer. The second part of the column name indicates which model run it corresponds to: xx_ndnf: diffusion switched OFF, isotopic fractionation during vapor exchange switched OFF xx_dnf: diffusion switched ON, isotopic fractionation during vapor exchange switched OFF xx_ndKINf_k18O_xx: diffusion switched OFF, isotopic fractionation during vapor exchange switched ON (k18O specified in column name) xx_dKINf_k18O_xx: diffusion switched ON, isotopic fractionation during vapor exchange switched ON (k18O specified in column name) snow_surface.zip: contains 2 csv files with the results of the simulations for the snow surface cell. Simulations were performed with alphas from Ellehøj et al., 2013 (https://doi.org/10.1002/rcm.6668) and a kinetic fractionation coefficient k18O of 0. File "snow_surface_alphas_Ellehoj_k18O_0_zsc_0.01.csv" contains the results for a zsc of 0.01 m; file "snow_surface_alphas_Ellehoj_k18O_0_zsc_0.04.csv" contains the results for a zsc of 0.04 m. In each file, the column "datetime" contains the age of the snow surface; the columns "d18O_xx" contains the δ18O composition of the snow surface; the columns "dD_xx" contains the δD composition of the snow surface; and the columns "dxs_xx" contains the d-excess composition of the snow surface. The second part of the column name indicates which model run it corresponds to: xx_ndnf: diffusion switched OFF, isotopic fractionation during vapor exchange switched OFF xx_dnf: diffusion switched ON, isotopic fractionation during vapor exchange switched OFF xx_ndKINf: diffusion switched OFF, isotopic fractionation during vapor exchange switched ON (k18O = 0) xx_dKINf: diffusion switched ON, isotopic fractionation during vapor exchange switched ON (k18O = 0) snowpack_profiles.zip: contains 8 csv files with the results of the simulations for the snowpack profiles over the period 1990-2023. Simulations were performed with alphas from Ellehøj et al., 2013 (https://doi.org/10.1002/rcm.6668), a kinetic fractionation coefficient k18O of 0, and a zsc of 0.04 m. Files "snowpack_1990_2023_cst_prates_xx.csv" contain the results of the simulations performed with constant precipitation rates; files "snowpack_1990_2023_ECHAM_prates_xx.csv" contain the results of the simulations performed with precipitation rates from ECHAM6-wiso. In each file, the column "datetime" contains the age of each snowpack layer; the columns "z" contains the depth of each snowpack layer; the columns "d18O" contains the δ18O composition of each snowpack layer; the columns "dD" contains the δD composition of each snowpack layer; and the columns "dxs" contains the d-excess composition of each snowpack layer. The second part of the file name indicates which model run it corresponds to: xx_ndnf.csv: diffusion switched OFF, isotopic fractionation during vapor exchange switched OFF xx_dnf.csv: diffusion switched ON, isotopic fractionation during vapor exchange switched OFF xx_ndKINf.csv: diffusion switched OFF, isotopic fractionation during vapor exchange switched ON (k18O = 0) xx_dKINf.csv: diffusion switched ON, isotopic fractionation during vapor exchange switched ON (k18O = 0)   The scientific theory of the SNOWISO model is described in:Wahl, S., Steen‐Larsen, H.C., Hughes, A.G., Dietrich, L.J., Zuhr, A., Behrens, M., Faber, A.K. and Hörhold, M., 2022. Atmosphere‐Snow Exchange Explains Surface Snow Isotope Variability. Geophysical Research Letters, https://doi.org/10.1029/2022GL099529. The documentation of the SNOWISO model v2 operational set-up and simulation results for the Greenland Ice Sheet is given in:Dietrich, L.J., Steen-Larsen, H.C., Wahl, S., Jones, T.R., Town, M. and Werner, M., 2023. Snow-atmosphere humidity exchange at the ice sheet surface alters annual mean climate signals in ice core records. Geophysical Research Letters, https://doi.org/10.1029/2023GL104249.
European data infrastructure with broad catalog discovery, free evaluation access and production-grade API options.
190K+
indexed dataset pages
32
countries and EU institutions
2019
API-first since
Free API quota
for evaluation and prototypes
SLA
history and push on production APIs
FAQ

Questions before production use

Practical answers on evaluation, licensing, freshness, versioning and support.

api.store is built and operated by Apitalks s.r.o. Company details and a direct contact path are linked in the footer for vendor checks and procurement review.
Yes. Selected APIs include a free API quota, so your team can validate coverage, freshness, response shape and workflow fit before asking for a production plan.
Often yes, but usage rights depend on the source license and dataset. We surface source, license and update metadata where available, and can help review terms before a production integration.
Maintained APIs include update metadata where available. For production integrations, we can add history, monitoring and push updates so changes are easier to detect and act on.
Production APIs can add SLA, stable identifiers, versioning support, history, push updates and direct support around the data your product or AI workflow depends on.

Didn't find the API you need?

Let us know and we will figure it out for you.

European data discovery with free evaluation access and production-grade API options.

Copyright © 2026. Made by Apitalks