Assessment of Climate Change Impact on Water Requirement and Rice Productivity

被引:0
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作者
Konan Jean-Yves N'GUESSAN [1 ]
Botou ADAHI [2 ]
Arthur-Brice KONAN-WAIDHET [1 ]
Satoh MASAYOSHI [3 ]
Nogbou Emmanuel ASSIDJO [4 ]
机构
[1] Environmental Training and Research Unit, Laboratory of Environmental Sciences and Technologies, Université Jean Lorougnon Guédé
[2] Department of Training and Research of Rural Engineering and Geographic Sciences, Institut National Polytechnique FéLIX HOUPHOU?T-BOIGNY
[3] University of Tsukuba
[4] Department of Training and Research of Chemical and Food Engineering, Laboratory of Modelling, Information and Processes, Institut National Polytechnique FéLIX HOUPHOU?T-BOIGNY
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中图分类号
S511 [稻];
学科分类号
0901 ;
摘要
Assessing the impact of climate change(CC) on agricultural production systems is mainly done using crop models associated with climate model outputs. This review is one of the few, with the main objective of providing a recent compendium of CC impact studies on irrigation needs and rice yields for a better understanding and use of climate and crop models. We discuss the strengths and weaknesses of climate impact studies on agricultural production systems, with a particular focus on uncertainty and sensitivity analyses of crop models. Although the new generation global climate models(GCMs) are more robust than previous ones, there is still a need to consider the effect of climate uncertainty on estimates when using them. Current GCMs cannot directly simulate the agro-climatic variables of interest for future irrigation assessment, hence the use of intelligent climate tools. Therefore, sensitivity and uncertainty analyses must be applied to crop models, especially for their calibration under different conditions. The impacts of CC on irrigation needs and rice yields vary across regions, seasons, varieties and crop models. Finally, integrated assessments, the use of remote sensing data, climate smart tools, CO2enrichment experiments, consideration of changing crop management practices and multi-scale crop modeling, seem to be the approaches to be pursued for future climate impact assessments for agricultural systems.
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页码:276 / 293
页数:18
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