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Adaptation à court et à long terme de l'agriculture au risque de sécheresse : une approche par couplage de modèles biophysiques et économiques

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Author Info
Arnaud Reynaud () (LERNA-INRA, Université Toulouse I de Sciences sociales, 21, allée de Brienne, 31042 Toulouse Cedex, France)

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Abstract

[paper in French] In this article, we analyse the impact of drought risk on agriculture. We use a biophysical crop growth model (STICS) in order to simulate crop yield under various climatic scenarios. A micro-economic model which optimises, under climate uncertainty, land allocation across crops and irrigation is developed to reflect farmer’s behaviour. This framework is used to assess the impact of drought risk on a representative French farmer located in the Midi-Pyrénées region (South-West of France). We first show that, on the short run, the private cost of a drought can be high. On the long run, farmers can however significantly reduce this cost by modifying their cropping systems. We finally demonstrate that French farmers may benefit from the implementation of early drought alert mechanisms.

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Publisher Info
Article provided by INRA Department of Economics in its journal Review of Agricultural and Environmental Studies.

Volume (Year): 90 (2009)
Issue (Month): 2 ()
Pages: 121-154
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Handle: RePEc:rae:jourae:v:90:y:2009:i:2:p:121-154

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Related research
Keywords: climate change; drought risk; agriculture; adaptation;

Find related papers by JEL classification:
Q1 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture
D8 - Microeconomics - - Information, Knowledge, and Uncertainty

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This page was last updated on 2009-11-19.


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