Effect of Future Climate Change on Wheat Yield and Water Use Efficiency Under Semi-arid Conditions as Predicted by APSIM-Wheat Model
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Agronomy and Crop Science
Link
http://link.springer.com/article/10.1007/s42106-018-0012-4/fulltext.html
Reference46 articles.
1. Abeysingha, N. S., Singh, M., Islam, A., & Sehgal, V. K. (2016). Climate change impacts on irrigated rice and wheat production in Gomti River basin of India: A case study. Springer Plus, 5(1), 1250–1270.
2. Bannayan, M., Mansoori, H., & Eyshi Rezaei, E. (2014). Estimating climate change, CO2 and technology development effects on wheat yield in northeast Iran. International Journal of Biometeorology, 58, 395–405.
3. Bannayan, M., Sanjani, S., Alizadeh, A., Sadeghi Lotfabadi, S., & Mohamadian, A. (2010). Association between climate indices, aridity index, and rainfed crop yield in northeast of Iran. Field Crops Research, 118, 105–114.
4. Boote, K. J., Jones, J. W., & Pickering, N. B. (1996). Potential uses and limitations of crop models. Agronomy Journal, 88, 704–716.
5. Bos, M. G. (1985). Summary of ICID definitions of irrigation efficiency. ICID Bulletin, 34, 28–31.
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