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首页> 外文期刊>Crop, Forage & Turfgrass Management >Establishing Irrigation Thresholds for Furrow-Irrigated Peanuts
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Establishing Irrigation Thresholds for Furrow-Irrigated Peanuts

机译:建立灌溉阈值Furrow-Irrigated花生

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Scheduling irrigations for furrow-irrigated peanut {Arachis hypogea L.) based on soil moisture potential could improve yield and net returns by ensuring adequate season-long soil water availability. This research was conducted to determine if sensor-based irrigation scheduling improves peanut yield, net returns above irrigation costs, and irrigation water use efficiency relative to FAO-56, a water balance irrigation-scheduling method that determines evapotrans-piration using meteorological data and crop growth stage. The effects of irrigation scheduling (FAO-56, -50 cbar, -75 cbar, -100 cbar, and non-irrigated) on peanut yield, net returns above irrigation costs, and irrigation water use efficiency were investigated at Stoneville, MS on a Bosket very fine sandy loam (fine-loamy, mixed, active, thermic Mollic Hapludalfs). Relative to non-irrigated and FAO-56, maintaining the soil moisture at -50 cbar improved peanut yield at least 12.7% and either had no effect during wet years or improved net returns above irrigation costs up to 20.7% during dry years (P < 0.0376). Maintaining soil moisture at -50 or -100 cbar either had no effect during wet years or increased irrigation water use efficiency by at least 5.3-fold relative to FAO-56 during dry years(P = 0.0071). Our data indicate that peanut yield, net returns above irrigation costs, and irrigation water use efficiency are more consistently optimized in furrow-irrigated environments by maintaining a season-long irrigation threshold of -50 cbar.
机译:调度春小麦furrow-irrigated花生基于土壤水分{落花生hypogea l .)潜在的可以提高产量和净回报率确保土壤水分充足的赛季可用性。确定传感器灌溉调度提高花生产量、净回报率灌溉成本和灌溉用水效率相对于FAO-56,水平衡灌溉制度的方法来决定evapotrans-piration气象数据和使用作物生长阶段。调度(FAO-56 -50 cbar -75 cbar, -100cbar和不受灌溉)对花生产量,净回报高于灌溉成本,和灌溉水分利用效率进行了调查Stoneville,女士在一个丛林非常良好的砂质壤土(fine-loamy、混合、活跃、热松软Hapludalfs)。-50 cbar FAO-56,保持土壤水分提高花生产量至少12.7%和在湿年或改善网络没有影响返回期间灌溉成本高达20.7%以上干年(P < 0.0376)。在-50年或-100年cbar要么没有影响湿年或增加灌溉用水至少5.3倍的相对效率在干旱年份FAO-56 (P = 0.0071)。表明,花生产量、净回报率灌溉成本和灌溉用水效率更持续优化furrow-irrigated环境维护整个赛季灌溉-50 cbar的阈值。

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