ISIMIP2a Simulation Data from Agricultural Sector

DOI

The Inter-Sectoral Impact Model Intercomparison Project (ISIMIP) provides a framework for the collation of a set of consistent, multi-sector, multi-scale climate-impact simulations, based on scientifically and politically-relevant historical and future scenarios. This framework serves as a basis for robust projections of climate impacts, as well as facilitating model evaluation and improvement, allowing for improved estimates of the biophysical and socio-economic impacts of climate change at different levels of global warming. It also provides a unique opportunity to consider interactions between climate change impacts across sectors. ISIMIP2a is the second ISIMIP simulation round, focusing on historical simulations (1971-2010) of climate impacts on agriculture, fisheries, permafrost, biomes, regional and global water and forests. This will serve as a basis for model evaluation and improvement, allowing for improved estimates of the biophysical and socio-economic impacts of climate change at different levels of global warming. The focus topic for ISIMIP2a is model evaluation and validation, in particular with respect to the representation of impacts of extreme weather events and climate variability. During this phase, four common global observational climate data sets were provided across all impact models and sectors. In addition, appropriate observational data sets of impacts for each sector were collected, against which the models can be benchmarked. Access to the input data for the impact models is provided through a central ISIMIP archive (see https://www.isimip.org/gettingstarted/#input-data-bias-correction). This entry refers to the ISIMIP2a simulation data from Agricultural Sector models: CGMS-WOFOST, CLM-Crop, EPIC-Boku, EPIC-IIASA, EPIC-TAMU, GEPIC, LPJ-GUESS, LPJmL, ORCHIDEE-CROP, pAPSIM, pDSSAT, PEGASUS, PEPIC, PRYSBI2.

The ISIMIP2a agriculture outputs are based on simulations from 14 agricultural sector models (see listing) according to the ISIMIP2a protocol (https://www.isimip.org/protocol/#isimip2a). The models simulate cop yields and irrigation water withdrawal (assuming unlimited water supply), based on planting dates, crop variety parameters, approximate maturity dates (to allow for spatially-explicit variety parameterization), as well as fertilizer use (N, P, K). A more detailed description of the models and model-specific amendments of the protocol are available here: https://www.isimip.org/impactmodels/.

Identifier
DOI https://doi.org/10.5880/PIK.2017.006
Related Identifier https://esg.pik-potsdam.de/projects/isimip/
Related Identifier https://www.earthsystemcog.org/projects/cog/tutorials_web
Related Identifier https://www.isimip.org/outcomes/#papers-isimip2a
Related Identifier https://www.isimip.org/protocol/#isimip2a
Related Identifier https://www.isimip.org/impactmodels
Related Identifier https://www.isimip.org/gettingstarted/#input-data-bias-correction
Metadata Access http://doidb.wdc-terra.org/oaip/oai?verb=GetRecord&metadataPrefix=oai_datacite&identifier=oai:doidb.wdc-terra.org:6366
Provenance
Creator Arneth, Almut; Balkovic, Juraj ORCID logo; Ciais, Philippe ORCID logo; de Wit, Allard ORCID logo; Deryng, Delphine ORCID logo; Elliott, Joshua ORCID logo; Folberth, Christian; Glotter, Michael; Iizumi, Toshichika ORCID logo; Izaurralde, Roberto C.; Jones, Andrew D.; Khabarov, Nikolay; Lawrence, Peter ORCID logo; Liu, Wenfeng; Mitter, Hermine; Müller, Christoph ORCID logo; Olin, Stefan; Pugh, Thomas A. M. ORCID logo; Reddy, Ashwan D.; Sakurai, Gen; Schmid, Erwin ORCID logo; Wang, Xuhui ORCID logo; Wu, Xiuchen; Yang, Hong; Büchner, Matthias ORCID logo
Publisher GFZ Data Services
Contributor Büchner, Matthias; Jägermeyr, Jonas
Publication Year 2017
Rights Model data are licensed under CC BY 4.0; EXCEPTIONS: data from model LPJ-GUESS is licensed under CC BY-NC 4.0; http://creativecommons.org/licenses/by/4.0/; http://creativecommons.org/licenses/by-nc/4.0/
OpenAccess true
Representation
Language English
Resource Type Dataset
Format text/plain; application/octet-stream
Size 379 Bytes; 2 Files
Discipline Earth System Research
Spatial Coverage (-180.000W, -90.000S, 180.000E, 90.000N); global, annual