REAL

Modelling of grassland fluxes in Europe: Evaluation of two biogeochemical models

Sándor, Renáta and Barcza, Zoltán and Hidy, Dóra and Lelleiné Kovács, Eszter and Ma, S. (2016) Modelling of grassland fluxes in Europe: Evaluation of two biogeochemical models. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 215. pp. 1-19. ISSN 0167-8809

[img] Text
SandorR_etal_LelleiKovacsE_publ_vers.pdf
Restricted to Registered users only

Download (3MB)

Abstract

Two independently developed simulation models - the grassland-specific PaSim and the biome-generic Biome-BGC MuSo (BBGC MuSo) - linking climate, soil, vegetation and management to ecosystem biogeochemical cycles were compared in a simulation of carbon (C) and water fluxes. The results were assessed against eddy-covariance flux data from five observational grassland sites representing a range of conditions in Europe: Grillenburg in Germany, Laqueuille in France with both extensive and intensive management, Monte Bondone in Italy and Oensingen in Switzerland. Model comparison (after calibration) gave substantial agreement, the performances being marginal to acceptable for weekly-aggregated gross primary production and ecosystem respiration (R2~0.66-0.91), weekly evapotranspiration (R2~0.78-0.94), soil water content in the topsoil (R2~0.1-0.7) and soil temperature (R2~0.88-0.96). The bias was limited to the range -13 to 9gCm-2week-1 for C fluxes (-11 to 8gCm-2week-1 in case of BBGC MuSo, and -13 to 9gCm-2week-1 in case of PaSim) and -4 to 6mmweek-1 for water fluxes (with BBGC MuSo providing somewhat higher estimates than PaSim), but some higher relative root mean square errors indicate low accuracy for prediction, especially for net ecosystem exchange The sensitivity of simulated outputs to changes in atmospheric carbon dioxide concentration ([CO<inf>2</inf>]), temperature and precipitation indicate, with certain agreement between the two models, that C outcomes are dominated by [CO<inf>2</inf>] and temperature gradients, and are less due to precipitation. ET rates decrease with increasing [CO<inf>2</inf>] in PaSim (consistent with experimental knowledge), while lack of appropriate stomatal response could be a limit in BBGC MuSo responsiveness. Results of the study indicate that some of the errors might be related to the improper representation of soil water content and soil temperature. Improvement is needed in the model representations of soil processes (especially soil water balance) that strongly influence the biogeochemical cycles of managed and unmanaged grasslands. © 2015 Elsevier B.V.

Item Type: Article
Uncontrolled Keywords: Model comparison; GRASSLANDS; Climate change; Carbon-water fluxes
Subjects: Q Science / természettudomány > QE Geology / földtudományok > QE02 Geochemistry / geokémia
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 16 Feb 2017 09:28
Last Modified: 16 Feb 2017 09:28
URI: http://real.mtak.hu/id/eprint/49159

Actions (login required)

Edit Item Edit Item