Hydro-pedotransfer functions: A roadmap for future development

Weber TKD, Weihermüller L, Nemes A, Bechtold M, Degré A, Diamantopoulos E, Fatichi S, Filipović V, Gupta S, Hohenbrink TL, Hirmas DR, Jackisch C, de Jong van Lier Q, Koestel J, Lehmann P, Marthews TR, Minasny B, Pagel H, van der Ploeg M, Shojaeezadeh SA, Svane SF, Szabó B, Vereecken H, Verhoef A, Young M, Zeng Y, Zhang Y, Bonetti S. 2024. Hydro-pedotransfer functions: A roadmap for future development. Hydrology and Earth System Sciences. 28(14), 3391–3433.

Download (ext.)

Journal Article | Published | English

Scopus indexed
Author
Weber, Tobias Karl David; Weihermüller, Lutz; Nemes, Attila; Bechtold, Michel; Degré, Aurore; Diamantopoulos, Efstathios; Fatichi, SimoneISTA; Filipović, Vilim; Gupta, Surya; Hohenbrink, Tobias L.; Hirmas, Daniel R.; Jackisch, Conrad
All
Abstract
<jats:p>Abstract. Hydro-pedotransfer functions (PTFs) relate easy-to-measure and readily available soil information to soil hydraulic properties (SHPs) for applications in a wide range of process-based and empirical models, thereby enabling the assessment of soil hydraulic effects on hydrological, biogeochemical, and ecological processes. At least more than 4 decades of research have been invested to derive such relationships. However, while models, methods, data storage capacity, and computational efficiency have advanced, there are fundamental concerns related to the scope and adequacy of current PTFs, particularly when applied to parameterise models used at the field scale and beyond. Most of the PTF development process has focused on refining and advancing the regression methods, while fundamental aspects have remained largely unconsidered. Most soil systems are not represented in PTFs, which have been built mostly for agricultural soils in temperate climates. Thus, existing PTFs largely ignore how parent material, vegetation, land use, and climate affect processes that shape SHPs. The PTFs used to parameterise the Richards–Richardson equation are mostly limited to predicting parameters of the van Genuchten–Mualem soil hydraulic functions, despite sufficient evidence demonstrating their shortcomings. Another fundamental issue relates to the diverging scales of derivation and application, whereby PTFs are derived based on laboratory measurements while often being applied at the field to regional scales. Scaling, modulation, and constraining strategies exist to alleviate some of these shortcomings in the mismatch between scales. These aspects are addressed here in a joint effort by the members of the International Soil Modelling Consortium (ISMC) Pedotransfer Functions Working Group with the aim of systematising PTF research and providing a roadmap guiding both PTF development and use. We close with a 10-point catalogue for funders and researchers to guide review processes and research.</jats:p>
Publishing Year
Date Published
2024-07-29
Journal Title
Hydrology and Earth System Sciences
Publisher
Copernicus Publications
Volume
28
Issue
14
Page
3391-3433
ISSN
eISSN
IST-REx-ID

Cite this

Weber TKD, Weihermüller L, Nemes A, et al. Hydro-pedotransfer functions: A roadmap for future development. Hydrology and Earth System Sciences. 2024;28(14):3391-3433. doi:10.5194/hess-28-3391-2024
Weber, T. K. D., Weihermüller, L., Nemes, A., Bechtold, M., Degré, A., Diamantopoulos, E., … Bonetti, S. (2024). Hydro-pedotransfer functions: A roadmap for future development. Hydrology and Earth System Sciences. Copernicus Publications. https://doi.org/10.5194/hess-28-3391-2024
Weber, Tobias Karl David, Lutz Weihermüller, Attila Nemes, Michel Bechtold, Aurore Degré, Efstathios Diamantopoulos, Simone Fatichi, et al. “Hydro-Pedotransfer Functions: A Roadmap for Future Development.” Hydrology and Earth System Sciences. Copernicus Publications, 2024. https://doi.org/10.5194/hess-28-3391-2024.
T. K. D. Weber et al., “Hydro-pedotransfer functions: A roadmap for future development,” Hydrology and Earth System Sciences, vol. 28, no. 14. Copernicus Publications, pp. 3391–3433, 2024.
Weber TKD, Weihermüller L, Nemes A, Bechtold M, Degré A, Diamantopoulos E, Fatichi S, Filipović V, Gupta S, Hohenbrink TL, Hirmas DR, Jackisch C, de Jong van Lier Q, Koestel J, Lehmann P, Marthews TR, Minasny B, Pagel H, van der Ploeg M, Shojaeezadeh SA, Svane SF, Szabó B, Vereecken H, Verhoef A, Young M, Zeng Y, Zhang Y, Bonetti S. 2024. Hydro-pedotransfer functions: A roadmap for future development. Hydrology and Earth System Sciences. 28(14), 3391–3433.
Weber, Tobias Karl David, et al. “Hydro-Pedotransfer Functions: A Roadmap for Future Development.” Hydrology and Earth System Sciences, vol. 28, no. 14, Copernicus Publications, 2024, pp. 3391–433, doi:10.5194/hess-28-3391-2024.
All files available under the following license(s):
Creative Commons Attribution 4.0 International Public License (CC-BY 4.0):

Link(s) to Main File(s)
Access Level
OA Open Access

Export

Marked Publications

Metadata Export

Search this title in

Google Scholar