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Same soil, different climate: Crop model intercomparison on translocated lysimeters

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    SYSNO ASEP0559235
    Document TypeJ - Journal Article
    R&D Document TypeJournal Article
    Subsidiary JČlánek ve WOS
    TitleSame soil, different climate: Crop model intercomparison on translocated lysimeters
    Author(s) Groh, J. (DE)
    Diamantopoulos, E. (DK)
    Duan, X. (DE)
    Ewert, F. (DE)
    Heinlein, F. (DE)
    Herbst, M. (DE)
    Holbak, M. (DK)
    Kamali, B. (DE)
    Kersebaum, Kurt Christian (UEK-B) ORCID, SAI, RID
    Kuhnert, M. (GB)
    Nendel, Claas (UEK-B) ORCID, RID, SAI
    Priesack, E. (DE)
    Steidl, J. (DE)
    Sommer, M. (DE)
    Puetz, T. (DE)
    Vanderborght, J. (DE)
    Vereecken, H. (DE)
    Wallor, E. (DE)
    Weber, T. K. D. (DE)
    Wegehenkel, M. (DE)
    Weihermueller, L. (DE)
    Gerke, H. H. (DE)
    Number of authors22
    Article numbere20202
    Source TitleVadose Zone Journal. - : Wiley
    Roč. 21, č. 4 (2022)
    Number of pages25 s.
    Languageeng - English
    CountryUS - United States
    Keywordsgrowth ; simulation ; water-use efficiency ; heat-stress ; eddy covariance ; harvest index ; change impact ; wheat yields ; calibration ; uncertainty
    Subject RIVEH - Ecology, Behaviour
    OECD categoryAgriculture
    R&D ProjectsEF16_019/0000797 GA MŠMT - Ministry of Education, Youth and Sports (MEYS)
    Research InfrastructureCzeCOS III - 90123 - Ústav výzkumu globální změny AV ČR, v. v. i.
    Method of publishingOpen access
    Institutional supportUEK-B - RVO:86652079
    UT WOS000795930100001
    EID SCOPUS85132621869
    DOI10.1002/vzj2.20202
    AnnotationCrop model intercomparison studies have mostly focused on the assessment of predictive capabilities for crop development using weather and basic soil data from the same location. Still challenging is the model performance when considering complex interrelations between soil and crop dynamics under a changing climate. The objective of this study was to test the agronomic crop and environmental flux-related performance of a set of crop models. The aim was to predict weighing lysimeter-based crop (i.e., agronomic) and water-related flux or state data (i.e., environmental) obtained for the same soil monoliths that were taken from their original environment and translocated to regions with different climatic conditions, after model calibration at the original site. Eleven models were deployed in the study. The lysimeter data (2014-2018) were from the Dedelow (Dd), Bad Lauchstadt (BL), and Selhausen (Se) sites of the TERENO (TERrestrial ENvironmental Observatories) SOILCan network. Soil monoliths from Dd were transferred to the drier and warmer BL site and the wetter and warmer Se site, which allowed a comparison of similar soil and crop under varying climatic conditions. The model parameters were calibrated using an identical set of crop- and soil-related data from Dd. Environmental fluxes and crop growth of Dd soil were predicted for conditions at BL and Se sites using the calibrated models. The comparison of predicted and measured data of Dd lysimeters at BL and Se revealed differences among models. At site BL, the crop models predicted agronomic and environmental components similarly well. Model performance values indicate that the environmental components at site Se were better predicted than agronomic ones. The multi-model mean was for most observations the better predictor compared with those of individual models. For Se site conditions, crop models failed to predict site-specific crop development indicating that climatic conditions (i.e., heat stress) were outside the range of variation in the data sets considered for model calibration. For improving predictive ability of crop models (i.e., productivity and fluxes), more attention should be paid to soil-related data (i.e., water fluxes and system states) when simulating soil-crop-climate interrelations in changing climatic conditions.
    WorkplaceGlobal Change Research Institute
    ContactNikola Šviková, svikova.n@czechglobe.cz, Tel.: 511 192 268
    Year of Publishing2023
    Electronic addresshttps://acsess.onlinelibrary.wiley.com/doi/10.1002/vzj2.20202
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