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Optimal coupling combinations between irrigation frequency and rate for drip-irrigated maize grown on sandy soil

机译:沙质土壤上滴灌玉米灌溉频率与速率的最佳耦合组合

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This study was conducted over 2 years (2007 and 2008) to establish the optimal combinations between irrigation frequency and rate for drip-irrigated maize using water production functions and water use-yield relationships. A field experiment was conducted using a randomized complete block split plot design with four irrigation frequencies (F1, F2, F3 and F4, irrigation events once every 1, 2, 3 or 4 days, respectively) and three drip irrigation rates (I1: 1.00, I2: 0.80, and I3: 0.60 of the estimated evapotranspiration, ET) as the main and split plots, respectively. Our results show that yield variables and water use efficiencies (WUEs) increased with increasing irrigation frequency and rate, with non-significant differences between F1 and F2 in yield variables and between I1 and I2 in WUEs. Moreover, the combination between various irrigation frequencies and rates had an important effect on yield variables and WUEs, with the highest values being found for F1I2 and F2I1 and the lowest for F3I3 and F4I3. The F1I3 treatment had grain yield and yield components values similar to those obtained for the F3I2 and F4I1 treatments and WUEs values similar to those obtained for the F2I1 and F2I2 treatments. Seasonal yield response factors (ky) were 1.81 and 1.86 in 2007 and 2008, respectively. Production functions of yield versus seasonal crop ET were linear for all combinations of irrigation frequency and rate and for all irrigation frequency treatments with the exception of the F1 treatment, which instead showed a second order relationship. The relationship between WUE and grain yield was best represented by a power equation. In conclusion, we identified the optimal coupling combinations between irrigation frequency and water application rate to achieve the maximum yield and WUEs under either sufficient (F2I1) or limited irrigation (F1I3) water supplies.
机译:这项研究历时2年(2007年和2008年),利用水的生产函数和水的利用率与产量之间的关系,确定了滴灌玉米的灌溉频率和灌溉速率之间的最佳组合。使用随机完整块分割图设计进行了四个灌溉频率( F 1 , F 2 , F 3 和 F 4 ,分别每1、2、3或4天灌溉一次)和三个滴灌速率( I 1 :1.00, I 2 :0.80和 I 3 :分别是估计蒸散量(ET)的0.60和主要散点。我们的结果表明,产量变量和水分利用效率(WUE)随着灌溉频率和灌溉速率的增加而增加,而 F 1 和 F 之间的差异不显着WUE中收益变量中的i> 2 和 I 1 与 I 2 之间。此外,不同灌溉频率和灌溉速率之间的组合对产量变量和水分利用效率有重要影响,其中 F 1 I 2 和 F 2 I 1 , F的最低值 3 I 3 和 F 4 I < / i> 3 。 F 1 I 3 处理的谷物产量和产量成分值与 F 3 I 2 和 F 4 I 1 处理和WUE值类似于对 F 2 I 1所获得的值和 F 2 I 2 处理。 2007年和2008年的季节性产量响应因子( k y )分别为1.81和1.86。除 F 1 处理外,所有灌溉频率和速率组合以及所有灌溉频率处理的产量与季节性作物ET的生产函数均呈线性关系,这表明二阶关系。 WUE与谷物产量之间的关系最好用幂方程表示。总之,我们确定了灌溉频率和施水量之间的最佳耦合组合,以在最大( F 2 I > 1 )或有限灌溉( F 1 I 3 )供水。

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