Spatial and temporal uncertainty of crop yield aggregations
[SDV.SA.AGRO] Life Sciences [q-bio]/Agricultural sciences/Agronomy
2. Zero hunger
info:eu-repo/classification/ddc/550
330
550
Crop yields
ddc:550
Harvested area
[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/Agronomy
crop yields
gridded data
04 agricultural and veterinary sciences
15. Life on land
harvested area
630
Earth sciences
Aggregation uncertainty
Global crop model
0401 agriculture, forestry, and fisheries
global crop model
Gridded data
DOI:
10.1016/j.eja.2016.08.006
Publication Date:
2016-11-01T14:17:11Z
AUTHORS (24)
ABSTRACT
Abstract The aggregation of simulated gridded crop yields to national or regional scale requires information on temporal and spatial patterns of crop-specific harvested areas. This analysis estimates the uncertainty of simulated gridded yield time series related to the aggregation with four different harvested area data sets. We compare aggregated yield time series from the Global Gridded Crop Model Intercomparison project for four crop types from 14 models at global, national, and regional scale to determine aggregation-driven differences in mean yields and temporal patterns as measures of uncertainty. The quantity and spatial patterns of harvested areas differ for individual crops among the four data sets applied for the aggregation. Also simulated spatial yield patterns differ among the 14 models. These differences in harvested areas and simulated yield patterns lead to differences in aggregated productivity estimates, both in mean yield and in the temporal dynamics. Among the four investigated crops, wheat yield (17% relative difference) is most affected by the uncertainty introduced by the aggregation at the global scale. The correlation of temporal patterns of global aggregated yield time series can be as low as for soybean (r = 0.28). For the majority of countries, mean relative differences of nationally aggregated yields account for 10% or less. The spatial and temporal difference can be substantial higher for individual countries. Of the top-10 crop producers, aggregated national multi-annual mean relative difference of yields can be up to 67% (maize, South Africa), 43% (wheat, Pakistan), 51% (rice, Japan), and 427% (soybean, Bolivia). Correlations of differently aggregated yield time series can be as low as r = 0.56 (maize, India), r = 0.05 (wheat, Russia), r = 0.13 (rice, Vietnam), and r = −0.01 (soybean, Uruguay). The aggregation to sub-national scale in comparison to country scale shows that spatial uncertainties can cancel out in countries with large harvested areas per crop type. We conclude that the aggregation uncertainty can be substantial for crop productivity and production estimations in the context of food security, impact assessment, and model evaluation exercises.
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