Model Input for Fracture intensity impacts on reaction front propagation and mineral weathering in three-dimensional fractured media
Authors: | |
---|---|
Owners: | Elizabeth Andrews |
Type: | Resource |
Storage: | The size of this resource is 122.1 KB |
Created: | Jun 30, 2022 at 6:52 p.m. |
Last updated: | Feb 09, 2023 at 4:42 p.m. |
Citation: | See how to cite this resource |
Sharing Status: | Public |
---|---|
Views: | 525 |
Downloads: | 32 |
+1 Votes: | Be the first one to this. |
Comments: | No comments (yet) |
Abstract
This resource contains a Jupyter notebook with the workflow for modeling reactive transport in upscaled fractured media. The necessary files are included as code blocks in the Jupyter notebook. dfnWorks files are python files while PFLOTRAN input files are text files.
Subject Keywords
Content
This resource contains links to external content. Linked content is
NOT stored in HydroShare, and we can't guarantee its availability, quality, or
security.
How to Cite
Andrews, E. (2023). Model Input for Fracture intensity impacts on reaction front propagation and mineral weathering in three-dimensional fractured media, HydroShare, http://www.hydroshare.org/resource/4263a04a14114953a4ee4c2be0139917
This resource is shared under the Creative Commons Attribution CC BY.
http://creativecommons.org/licenses/by/4.0/
Comments
There are currently no comments
New Comment