Title of article :
Evaluation of the AquaCrop model for simulating the impact of water deficits and different irrigation regimes on the biomass and yield of winter wheat grown on Chinaʹs Loess Plateau
Author/Authors :
Wang Xiangxiang، نويسنده , , Wang QuanJiu، نويسنده , , Fan-jun MA، نويسنده , , Fu Qiuping، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
10
From page :
95
To page :
104
Abstract :
Accurate models of crop growth are important for evaluating the effects of water deficits on crop yield or productivity. AquaCrop was developed by the FAO (Food and Agricultural Organization) of the United Nations to simulate yield responses to changes in the supply of water. The objectives of this study were to evaluate the modelʹs ability to simulate winter wheat performance under full and deficit water conditions on Chinaʹs Loess Plateau and to study the effect of different irrigation scenarios on wheat yield. The modelʹs output was compared to experimental data collected between 2006 and 2011 at the Changwu Agri-ecological Station on the Loess Plateau. The model accurately estimated the soil water content of the root zone as well as the biomass and grain yields of winter wheat. When simulating the soil water during the 2008–2009 growing season, the calculated values of r2, RMSE, ME, and the d-index were 0.98, 8.4 mm, 0.98, and 0.99 for no irrigation; 0.95, 14.4 mm, 0.93, and 0.98 for double irrigation; 0.88, 22.9 mm, 0.68, and 0.90 for triple irrigation; and 0.93, 17.5 mm, 0.75, and 0.9 for quadruple irrigation, respectively. For the grain yield, the r2 values for the modelʹs outputs under the single irrigation, double irrigation, triple irrigation, and quadruple irrigation treatments were 0.80, 0.98, 0.99, and 0.77, respectively. Comparing to no irrigation the highest increases in grain yield were observed for scenarios in which irrigation was applied during the over-wintering and turning green stages. Moreover, the simulations indicated that under double irrigation regimes, water can be withheld during over-wintering and either turning green or stem elongation without greatly reducing yields. The minimum amounts of irrigation water required to achieve high WUE in wet, normal and dry years were 225, 150 and 150 mm, respectively.
Keywords :
AquaCrop model , Model calibration , model validation , Northern China , Wheat irrigation
Journal title :
Agricultural Water Management
Serial Year :
2013
Journal title :
Agricultural Water Management
Record number :
1327395
Link To Document :
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