Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand?

Paschalis A, Fatichi S, Zscheischler J, Ciais P, Bahn M, Boysen L, Chang J, De Kauwe M, Estiarte M, Goll D, Hanson PJ, Harper AB, Hou E, Kigel J, Knapp AK, Larsen KS, Li W, Lienert S, Luo Y, Meir P, Nabel JEMS, Ogaya R, Parolari AJ, Peng C, Peñuelas J, Pongratz J, Rambal S, Schmidt IK, Shi H, Sternberg M, Tian H, Tschumi E, Ukkola A, Vicca S, Viovy N, Wang Y, Wang Z, Williams K, Wu D, Zhu Q. 2020. Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand? Global Change Biology. 26(6), 3336–3355.


Journal Article | Published | English

Scopus indexed
Author
Paschalis, Athanasios; Fatichi, SimoneISTA; Zscheischler, Jakob; Ciais, Philippe; Bahn, Michael; Boysen, Lena; Chang, Jinfeng; De Kauwe, Martin; Estiarte, Marc; Goll, Daniel; Hanson, Paul J.; Harper, Anna B.
All
Abstract
Changes in rainfall amounts and patterns have been observed and are expected to continue in the near future with potentially significant ecological and societal consequences. Modelling vegetation responses to changes in rainfall is thus crucial to project water and carbon cycles in the future. In this study, we present the results of a new model‐data intercomparison project, where we tested the ability of 10 terrestrial biosphere models to reproduce the observed sensitivity of ecosystem productivity to rainfall changes at 10 sites across the globe, in nine of which, rainfall exclusion and/or irrigation experiments had been performed. The key results are as follows: (a) Inter‐model variation is generally large and model agreement varies with timescales. In severely water‐limited sites, models only agree on the interannual variability of evapotranspiration and to a smaller extent on gross primary productivity. In more mesic sites, model agreement for both water and carbon fluxes is typically higher on fine (daily–monthly) timescales and reduces on longer (seasonal–annual) scales. (b) Models on average overestimate the relationship between ecosystem productivity and mean rainfall amounts across sites (in space) and have a low capacity in reproducing the temporal (interannual) sensitivity of vegetation productivity to annual rainfall at a given site, even though observation uncertainty is comparable to inter‐model variability. (c) Most models reproduced the sign of the observed patterns in productivity changes in rainfall manipulation experiments but had a low capacity in reproducing the observed magnitude of productivity changes. Models better reproduced the observed productivity responses due to rainfall exclusion than addition. (d) All models attribute ecosystem productivity changes to the intensity of vegetation stress and peak leaf area, whereas the impact of the change in growing season length is negligible. The relative contribution of the peak leaf area and vegetation stress intensity was highly variable among models.
Publishing Year
Date Published
2020-06-01
Journal Title
Global Change Biology
Publisher
Wiley
Volume
26
Issue
6
Page
3336-3355
ISSN
eISSN
IST-REx-ID

Cite this

Paschalis A, Fatichi S, Zscheischler J, et al. Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand? Global Change Biology. 2020;26(6):3336-3355. doi:10.1111/gcb.15024
Paschalis, A., Fatichi, S., Zscheischler, J., Ciais, P., Bahn, M., Boysen, L., … Zhu, Q. (2020). Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand? Global Change Biology. Wiley. https://doi.org/10.1111/gcb.15024
Paschalis, Athanasios, Simone Fatichi, Jakob Zscheischler, Philippe Ciais, Michael Bahn, Lena Boysen, Jinfeng Chang, et al. “Rainfall Manipulation Experiments as Simulated by Terrestrial Biosphere Models: Where Do We Stand?” Global Change Biology. Wiley, 2020. https://doi.org/10.1111/gcb.15024.
A. Paschalis et al., “Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand?,” Global Change Biology, vol. 26, no. 6. Wiley, pp. 3336–3355, 2020.
Paschalis A, Fatichi S, Zscheischler J, Ciais P, Bahn M, Boysen L, Chang J, De Kauwe M, Estiarte M, Goll D, Hanson PJ, Harper AB, Hou E, Kigel J, Knapp AK, Larsen KS, Li W, Lienert S, Luo Y, Meir P, Nabel JEMS, Ogaya R, Parolari AJ, Peng C, Peñuelas J, Pongratz J, Rambal S, Schmidt IK, Shi H, Sternberg M, Tian H, Tschumi E, Ukkola A, Vicca S, Viovy N, Wang Y, Wang Z, Williams K, Wu D, Zhu Q. 2020. Rainfall manipulation experiments as simulated by terrestrial biosphere models: Where do we stand? Global Change Biology. 26(6), 3336–3355.
Paschalis, Athanasios, et al. “Rainfall Manipulation Experiments as Simulated by Terrestrial Biosphere Models: Where Do We Stand?” Global Change Biology, vol. 26, no. 6, Wiley, 2020, pp. 3336–55, doi:10.1111/gcb.15024.
All files available under the following license(s):
Copyright Statement:
This Item is protected by copyright and/or related rights. [...]

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

Export

Marked Publications

Metadata Export

Search this title in

Google Scholar