Quantifying the uncertainty introduced by internal climate variability in projections of Canadian crop production
Dados Bibliográficos
| ID | 15549588 |
|---|---|
| Autores | Budong Qian (0000-0001-5413-3114, Ottawa Research and Development Centre, autor correspondente), Qi Jing (0000-0001-9748-1661, Agriculture and Agri-Food Canada, autor correspondente), Ward Smith (0000-0001-7462-5247, Ottawa Research and Development Centre), Brian Grant (0000-0001-5928-0391, Agriculture and Agri-Food Canada), Alex J Cannon (0000-0002-8025-3790, Environment and Climate Change Canada), Xuebin Zhang (0000-0002-9012-8491, Environment and Climate Change Canada) |
| Ano | 2020 |
| Volume | 15 |
| Fascículo | 7 |
| Páginas | 074032-074032 |
| Data de publicação | 2020-04-14 |
| Peer Reviewed | Sim |
| Open Access | Sim |
| Tipo | ARTICLE |
| Periódico | Environmental Research Letters (JOURNAL) |
| Identificadores do periódico | ISSN: 1748-9326 • E-ISSN: 1748-9326 |
| Editora | IOP Publishing (PUBLISHER • GB) |
| DOI | 10.1088/1748-9326/ab88fc |
| OpenAlex | W3016702807 |
| Idioma | EN |
| Referências citadas | 41 |
Internal climate variability (ICV) is one of the major sources of uncertainty in climate projections, yet it is seldom quantified for projections of crop production. Our study focuses on quantifying the uncertainty due to ICV in projections of crop productions in Canada. We utilize climate scenarios from two large ensembles (LEs, CanESM2-LE and CanRCM4-LE with 25 members each) as inputs to the crop models in the Decision Support System for Agrotechnology Transfer. We simulate crop yields for canola, maize and spring wheat under the future climates of four global warming levels. The coefficient of variation (CV) of the projected crop production across the LE members is used to quantify the uncertainty related to ICV and this is compared with the CVs generated using the 20 GCMs in the Coupled Model Intercomparison Project Phase 5 (CMIP5). Crop production in Canada could increase with global warming, e.g. spring wheat production could increase by up to 21% at the warming level of 3.0 °C. The projections often produce larger uncertainty associated with the GCMs than from ICV at all warming levels above 2.0 °C. The results from an asymptotic test for the equality of CVs show a significant difference in CVs of projections of canola production between CanESM2-LE/CanRCM4-LE and CMIP5 for the warming level of 3.0 °C. However, the test results do not indicate a significant difference among the ensembles at all four warming levels for maize and spring wheat. The uncertainty due to ICV is often comparable to that associated with GCMs at the warming level of 1.5 °C, e.g. a CV of 6.0 and 6.4% for CanESM2-LE and CanRCM4-LE and 6.6% for CMIP5 in the projections of spring wheat production. We conclude there is a need to account for uncertainty related to ICV in projections of Canadian crop production, especially at lower warming levels
Agriculture · Agronomy · Atmospheric sciences · Biology · Canola · Climate change · Climate model · Climatology · Coupled model intercomparison project · Crop · Crop production · Crop yield · Global warming · Production (economics · Agricultural risk and resilience · Climate change impacts on agriculture · Climate variability and models · Environmental Science · Ecology
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Are regional climate models relevant for crop yield prediction in West Africa
| Velocidade de citação | historical |
|---|---|
| Altamente citado | Não |