Accompanying model files for Aranda Reina et al. (2025, GCA) "Quantifying the impacts of exogenous dust inputs to the critical zone using reactive transport modeling"


Authors:
Owners: Jennifer DruhanCUAHSI Hydroshare Publisher
Type: Resource
Storage: The size of this resource is 342.9 MB
Created: Jan 05, 2025 at 9:04 p.m. (UTC)
Last updated: Jan 27, 2025 at 4:10 p.m. (UTC)
Published date: Jan 27, 2025 at 4:10 p.m. (UTC)
DOI: 10.4211/hs.c5411ee6e1f54b9f9c7beaa9263f6969
Citation: See how to cite this resource
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Abstract

This repository contains supporting material for Aranda Reina, C., Bouchez, J. and Druhan, J.L. (2025) "Quantifying the impacts of exogenous dust inputs to the critical zone using reactive transport modeling" Geochimica et Cosmochimica Acta, https://doi.org/10.1016/j.gca.2025.01.023

Coverage

Spatial

Coordinate System/Geographic Projection:
WGS 84 EPSG:4326
Coordinate Units:
Decimal degrees
Place/Area Name:
Sapine Creek, Mont Lozère, Parc National des Cévennes, France
Longitude
3.8083°
Latitude
44.3501°
Marker
Leaflet Map data © OpenStreetMap contributors

Content

    No files to display.

readme.md

Supporting resources for 'Quantifying the impacts of exogenous dust inputs to the critical zone using reactive transport modeling'

Aranda Reina, C., Bouchez, and Druhan, J.L. (2025) 'Quantifying the impacts of exogenous dust inputs to the critical zone using reactive transport modeling', Geochimica et Cosmochimica Acta, https://doi.org/10.1016/j.gca.2025.01.023

Proof-of-Concept

Directory that contains model input and output files used to produce Figure 6. The models were run with a modified version of the CrunchTope executable used in Golla et al. (2021; https://doi.org/10.1016/j.epsl.2021.116988) and with PETSc 3.20.4 (https://petsc.org/release/).

DustToySteadyState

Subdirectory that contains model input and output files used to produce the starting point for dust application in the proof of concept models. The restart (.rst) file produced by running this model is suppled as a starting point to the remaining subdirectories in this Proof-of-Concept simulation

UnreactiveModel-scenario1

Subdirectory that contains model input and output files for a simulation in which an inert dust is applied to the top of the DustToySteadyState weathering profile

ReactiveModel-scenario2a

Subdirectory that contains model input and output files for a simulation in which a moderately soluble dust is applied to the top of the DustToySteadyState weathering profile

ReactiveModel-scenario2b

Subdirectory that contains model input and output files for a simulation in which a highly soluble dust is applied to the top of the DustToySteadyState weathering profile

SapineCaseStudy

Directory that contains model input and output files used to produce Figures 7-9. The models were run with a modified version of the CrunchTope executable used in Golla et al. (2021; https://doi.org/10.1016/j.epsl.2021.116988) and with PETSc 3.20.4 (https://petsc.org/release/).

SSModel

The original simulation developed by Golla et al. (2021; https://doi.org/10.1016/j.epsl.2021.116988). The restart (.rst) file produced by running this model is suppled as a starting point to the remaining subdirectories in this SapineCaseStudy simulation

DustDepositionModel

Subdirectory that contains model input and output files for a simulation in which exogenous dust is applied to the top of the SSModel weathering profile for the Sapine watershed.

Related Resources

This resource is referenced by Aranda Reina, C., Bouchez, and Druhan, J.L. (2025) 'Quantifying the impacts of exogenous dust inputs to the critical zone using reactive transport modeling', Geochimica et Cosmochimica Acta, https://doi.org/10.1016/j.gca.2025.01.023

Credits

Funding Agencies

This resource was created using funding from the following sources:
Agency Name Award Title Award Number
U.S. National Science Foundation 2047318

How to Cite

Aranda Reina, C., J. Bouchez, J. L. Druhan (2025). Accompanying model files for Aranda Reina et al. (2025, GCA) "Quantifying the impacts of exogenous dust inputs to the critical zone using reactive transport modeling", HydroShare, https://doi.org/10.4211/hs.c5411ee6e1f54b9f9c7beaa9263f6969

This resource is shared under the Creative Commons Attribution CC BY.

http://creativecommons.org/licenses/by/4.0/
CC-BY

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