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Irrigation application efficiency and deep drainage potential under surface irrigated cotton

机译:地表灌溉棉的灌溉施用效率和深层排水潜力

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摘要

Furrow irrigation events conducted under usual farmer management were analysed to determine the irrigation application efficiencies being attained, and the magnitude of the irrigation contribution to deep drainage under surface irrigated cotton in Queensland. Application efficiencies were shown to vary widely from 17 to 100% and on average were a low 48%. Losses to deep drainage were substantial, averaging 42.5 mm per irrigation. This has the potential for significant environmental harm and also represents an annual loss of up to 2500 m3/ha (2.5 Ml/ha) of water that could be beneficially used to grow more cotton. Simulations of each event using the simulation model SIRMOD illustrated simple 'recipe' strategies that would lead to gains in efficiency and reductions in the deep drainage losses. Additional simulations of selected events showed that further significant improvements in performance can be achieved by the application of more advanced irrigation management practices, involving in-field evaluation and optimisation of the flow rate and irrigation time to suit the individual soil conditions and furrow characteristics. Application efficiencies in the range 85 to 95% are achievable in all but the most adverse conditions. The dependency between deep drainage and irrigation management was demonstrated, confirming that substantial reductions in deep drainage are possible by ensuring that irrigation applications do not exceed the soil moisture deficit.
机译:分析了在通常的农民管理下进行的沟灌事件,以确定达到的灌溉应用效率,以及昆士兰州地面灌溉棉花下深层排水的灌溉贡献量。结果表明,应用效率在17%至100%之间变化很大,平均仅为48%。深层排水造成的损失是巨大的,每次灌溉平均损失42.5毫米。这有可能对环境造成严重危害,并且每年损失高达2500立方米/公顷(2.5毫升/公顷)的水,这些水可以有益地用于种植更多的棉花。使用模拟模型SIRMOD对每个事件进行的模拟说明了简单的“配方”策略,可以提高效率并减少深层排水损失。对选定事件的其他模拟表明,通过应用更先进的灌溉管理实践,可以实现性能的进一步显着改善,包括现场评估以及优化流量和灌溉时间,以适应不同的土壤条件和犁沟特性。除了最不利的条件外,其他情况下的应用效率都可达到85%至95%。证实了深层排水与灌溉管理之间的依赖关系,这证实了通过确保灌溉应用不超过土壤水分不足,可以大大减少深层排水。

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