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Title: Infiltration from the Pedon to Global Grid Scales: An Overview and Outlook for Land Surface Modeling
Authors: Vereecken, H.
Participants: Weihermüller, L.
Assouline, S.
Šimůnek, J.
Verhoef, A.
Herbst, M.
Archer, N.
Issue Date: 2019
Series/Report no.: Vadose Zone Journal, Volume 18, Issue 1 (2019), pp.1-53
Abstract: . We still lack a consistent theoretical framework to predict effective fluxes and parameters that control infiltration in LSMs. Our analysis shows that there is a large variety of approaches used to estimate soil hydraulic properties. Novel, highly resolved soil information at higher resolutions than the grid scale of LSMs may help in better quantifying subgrid variability of key infiltration parameters. Currently, only a few LSMs consider the impact of soil structure on soil hydraulic properties. Finally, we identified several processes not yet considered in LSMs that are known to strongly influence infiltration. Especially, the impact of soil structure on infiltration requires further research. To tackle these challenges and integrate current knowledge on soil processes affecting infiltration processes into LSMs, we advocate a stronger exchange and scientific interaction between the soil and the land surface modeling communities.
URI: http://tailieuso.tlu.edu.vn/handle/DHTL/9797
Source: https://acsess.onlinelibrary.wiley.com/doi/10.2136/vzj2018.10.0191
ISSN: 1539-1663
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