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首页> 外文期刊>The Journal of Agricultural Science >Analysis of deficit irrigation strategies by using SUBSTOR-Potato model in a semi-arid area
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Analysis of deficit irrigation strategies by using SUBSTOR-Potato model in a semi-arid area

机译:半干旱地区替代土豆模型分析赤字灌溉策略

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In areas where water is scarce, the use of regulated deficit irrigation, combined with decision support system tools, may decrease the impact of agriculture on natural water resources, as well as on energy consumption, thereby improving the profitability of farms. With this aim, the SUBSTOR-Potato model (incorporated in the DSSAT Program) was evaluated with a 2-year field test (2011 and 2012) conducted in a semi-arid area (Albacete, Spain) applying four irrigation levels (120, 100, 80 and 60% of irrigation requirements). Subsequently, the model was used for simulating the potato yield under several deficit irrigation strategies (ISs) during 30 years of a semi-arid climate (1988-2017) and determining the most profitable option. The considered ISs were deemed those most suitable from the yield and water productivity point of view by some authors. The model performance for tuber yield was satisfactory with an index of agreement >0.91 and errors between 0.71 and 3.06 x 10(3) kg/ha. The ISs simulated with SUBSTOR-Potato showed that slight deficit irrigation (5-10%) may increase the water productivity and profitability of the farms. Moreover, tuber formation (from onset of tuber initiation to harvest) was shown to be the most sensitive stage, therefore it is highly recommended to avoid deficit during this stage, which would cause a large reduction in yield (around 8 t/ha, depending on the level of deficit suffered by the crop).
机译:在水稀缺的地区,使用规范的赤字灌溉,与决策支持系统工具相结合,可能会降低农业对天然水资源的影响,以及能耗,从而提高农场的盈利能力。通过此目的,通过在半干旱地区(Albacete,西班牙)在应用四个灌溉水平(120,100 ,80%和60%的灌溉要求)。随后,该模型用于在半干旱气候(1988-2017)的30年期间在几个赤字灌溉策略(ISS)下模拟马铃薯产量,并确定最有利可图的选择。被审议的ISS被认为是一些作者最适合的人最适合的人。块茎产量的模型性能令人满意,令人满意的协议> 0.91和0.71和3.06×10(3)kg / ha之间的误差。用成分土豆模拟的ISS显示出略微赤字灌溉(5-10%)可能会增加农场的水生产率和盈利能力。此外,块茎形成(从块茎发起的发起)被证明是最敏感的阶段,因此强烈建议在此阶段避免缺陷,这会导致产量大大降低(约8T /公顷论作物遭受的赤字水平)。

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