Scale-dependent permeability
Authors: | |
---|---|
Owners: | Behzad Ghanbarian |
Type: | Resource |
Storage: | The size of this resource is 50.6 KB |
Created: | Aug 21, 2021 at 5:48 p.m. |
Last updated: | Aug 23, 2021 at 6:02 p.m. (Metadata update) |
Published date: | Aug 23, 2021 at 6:02 p.m. |
DOI: | 10.4211/hs.9c9d4ae70a1a4054967a502d35c16d1b |
Citation: | See how to cite this resource |
Sharing Status: | Published |
---|---|
Views: | 1123 |
Downloads: | 55 |
+1 Votes: | Be the first one to this. |
Comments: | No comments (yet) |
Abstract
Four databases including 11 simulations. References are:
Berg, S., Rücker, M., Ott, H., Georgiadis, A., van der Linde, H., Enzmann, F., et al. (2016). Connected pathway relative permeability from pore-scale imaging of imbibition. Advances in Water Resources, 90, 24–35. https://doi.org/10.1016/j.advwatres.2016.01.010
Gao, Y., Yao, J., Yang, Y., & Zhao, J. (2014). REV identification of tight sandstone in sulige gas field in changqing oilfield china using CT based digital core technology. In 2014 International Symposium of the Society of Core Analysts, Avignon, France (pp. SCA2014-036).
Gerke, K. M., & Karsanina, M. V. (2021). How pore structure non‐stationarity compromises flow properties representativity (REV) for soil samples: Pore‐scale modelling and stationarity analysis. European Journal of Soil Science, 72, 527–545.
Sahimi, M., Hughes, B. D., Scriven, L. E., & Davis, H. T. (1986). Dispersion in flow through porous media-I. One-phase flow. Chemical Engineering Science, 41(8), 2103–2122. https://doi.org/10.1016/0009-2509(86)87128-7
Subject Keywords
Content
How to Cite
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