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The GGCMI Phase 2 emulators: global gridded crop model responses to changes in CO2, temperature, water, and nitrogen (version 1.0)

Authors :
Tobias Hank
Pete Falloon
Jonas Jägermeyr
Alex C. Ruane
Joshua Elliott
Christoph Müller
Thomas A. M. Pugh
Wenfeng Liu
Ziwei Wang
Karina Williams
Stefan Olin
Meridel Phillips
James A. Franke
Ingrid Jacquemin
Curtis D. Jones
Marie Dury
Christian Folberth
Ashwan Reddy
Michelle Li
R. Cesar Izaurralde
Elisabeth J. Moyer
Florian Zabel
Abigail Snyder
Louis François
Source :
Geoscientific Model Development. 13:3995-4018
Publication Year :
2020
Publisher :
Copernicus GmbH, 2020.

Abstract

Statistical emulation allows combining advantageous features of statistical and process-based crop models for understanding the effects of future climate changes on crop yields. We describe here the development of emulators for nine process-based crop models and five crops using output from the Global Gridded Model Intercomparison Project (GGCMI) Phase 2. The GGCMI Phase 2 experiment is designed with the explicit goal of producing a structured training dataset for emulator development that samples across four dimensions relevant to crop yields: atmospheric carbon dioxide (CO2) concentrations, temperature, water supply, and nitrogen inputs (CTWN). Simulations are run under two different adaptation assumptions: that growing seasons shorten in warmer climates, and that cultivar choice allows growing seasons to remain fixed. The dataset allows emulating the climatological-mean yield response of all models with a simple polynomial in mean growing-season values. Climatological-mean yields are a central metric in climate change impact analysis; we show here that they can be captured without relying on interannual variations. In general, emulation errors are negligible relative to differences across crop models or even across climate model scenarios; errors become significant only in some marginal lands where crops are not currently grown. We demonstrate that the resulting GGCMI emulators can reproduce yields under realistic future climate simulations, even though the GGCMI Phase 2 dataset is constructed with uniform CTWN offsets, suggesting that the effects of changes in temperature and precipitation distributions are small relative to those of changing means. The resulting emulators therefore capture relevant crop model responses in a lightweight, computationally tractable form, providing a tool that can facilitate model comparison, diagnosis of interacting factors affecting yields, and integrated assessment of climate impacts.

Details

ISSN :
19919603
Volume :
13
Database :
OpenAIRE
Journal :
Geoscientific Model Development
Accession number :
edsair.doi...........de376677eff873194f494a5ed48d6839
Full Text :
https://doi.org/10.5194/gmd-13-3995-2020