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Statistical analysis of large simulated yield datasets for studying climate change effects
- Source :
- Handbook of Climate Change and Agroecosystems, Handbook of Climate Change and Agroecosystems, 3, World Scientific Publishing-Imperial College Press, 525 p., 2015, ICP Series on Climate Change Impacts, Adaptation, and Mitigation, 978-1-78326-563-3. ⟨10.1142/9781783265640_0011⟩, Handbook of Climate Change and Agroecosystems, 3, World Scientific Publishing-Imperial College Press, 525 p., 2015, ICP Series on Climate Change Impacts, Adaptation, and Mitigation, 978-1-78326-563-3. 〈10.1142/9781783265640_0011〉, Handbook of Climate Change and Agroecosystems ISBN: 9781783265633, Handbook of Climate Change and Agroecosystems: The Agricultural Model Intercomparison and Improvement Project (AgMIP)
- Publication Year :
- 2015
- Publisher :
- HAL CCSD, 2015.
-
Abstract
- Many studies have been carried out during the last decade to study the effect of climate change on crop yields and other key crop characteristics. In these studies, one or several crop models were used to simulate crop growth and development for different climate scenarios that correspond to different projections of atmospheric CO2 concentration, temperature, and rainfall changes (Semenov et al., 1996; Tubiello and Ewert, 2002; White et al., 2011). The Agricultural Model Intercomparison and Improvement Project (AgMIP; Rosenzweig et al., 2013) builds on these studies with the goal of using an ensemble of multiple crop models in order to assess effects of climate change scenarios for several crops in contrasting environments. These studies generate large datasets, including thousands of simulated crop yield data. They include series of yield values obtained by combining several crop models with different climate scenarios that are defined by several climatic variables (temperature, CO2, rainfall, etc.). Such datasets potentially provide useful information on the possible effects of different climate change scenarios on crop yields. However, it is sometimes difficult to analyze these datasets and to summarize them in a useful way due to their structural complexity; simulated yield data can differ among contrasting climate scenarios, sites, and crop models. Another issue is that it is not straightforward to extrapolate the results obtained for the scenarios to alternative climate change scenarios not initially included in the simulation protocols. Additional dynamic crop model simulations for new climate change scenarios are an option but this approach is costly, especially when a large number of crop models are used to generate the simulated data, as in AgMIP. Statistical models have been used to analyze responses of measured yield data to climate variables in past studies (Lobell et al., 2011), but the use of a statistical model to analyze yields simulated by complex process-based crop models is a rather new idea. We demonstrate herewith that statistical methods can play an important role in analyzing simulated yield data sets obtained from the ensembles of process-based crop models. Formal statistical analysis is helpful to estimate the effects of different climatic variables on yield, and to describe the between-model variability of these effects.
- Subjects :
- analyse de données
[SDV.SA]Life Sciences [q-bio]/Agricultural sciences
Earth Observation and Environmental Informatics
010504 meteorology & atmospheric sciences
Yield (finance)
data analysis
Climate change
01 natural sciences
Agro Water- en Biobased Economy
statistical analysis
Effects of global warming
Aardobservatie en omgevingsinformatica
Life Science
Alterra - Centrum Bodem
[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciences
global change
0105 earth and related environmental sciences
2. Zero hunger
changement climatique
WIMEK
Mathematical model
analyse statistique
Crop yield
Soil Science Centre
Global change
Statistical model
04 agricultural and veterinary sciences
15. Life on land
PE&RC
Climate resilience
Climate Resilience
Plant Production Systems
Klimaatbestendigheid
13. Climate action
Plantaardige Productiesystemen
Climatology
040103 agronomy & agriculture
0401 agriculture, forestry, and fisheries
Environmental science
Subjects
Details
- Language :
- English
- ISBN :
- 978-1-78326-563-3
- ISBNs :
- 9781783265633
- Database :
- OpenAIRE
- Journal :
- Handbook of Climate Change and Agroecosystems, Handbook of Climate Change and Agroecosystems, 3, World Scientific Publishing-Imperial College Press, 525 p., 2015, ICP Series on Climate Change Impacts, Adaptation, and Mitigation, 978-1-78326-563-3. ⟨10.1142/9781783265640_0011⟩, Handbook of Climate Change and Agroecosystems, 3, World Scientific Publishing-Imperial College Press, 525 p., 2015, ICP Series on Climate Change Impacts, Adaptation, and Mitigation, 978-1-78326-563-3. 〈10.1142/9781783265640_0011〉, Handbook of Climate Change and Agroecosystems ISBN: 9781783265633, Handbook of Climate Change and Agroecosystems: The Agricultural Model Intercomparison and Improvement Project (AgMIP)
- Accession number :
- edsair.doi.dedup.....8885e64bd915ae9cee525f98d593a13f
- Full Text :
- https://doi.org/10.1142/9781783265640_0011⟩