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Quantifying yield and water productivity gaps in an irrigation district under rotational delivery schedule

机译:在轮灌计划下量化灌溉区的产量和水生产率差距

摘要

Removal of irrigation network limitations under a rotational delivery schedule has been focused on improving infrastructures without paying sufficient attention to improving management. We developed a methodology to assess the yield and water productivity gaps in the Río Dulce irrigation system, Santiago del Estero, Argentina. The AquaCrop model was used to determine the potential and attainable yields of maize and cotton under different water management scenarios. Actual yields and irrigation practices were determined by field surveys and farmers interviews. The AquaGIS tool facilitated the assessment of the spatial and temporal variations in yield using a daily climatic database of 26 years. The average yield gap (potential minus actual) amounted to 6 t ha−1 in maize and 2 t ha−1 in cotton. The average water productivity gap was 7 kg ha−1 mm−1 in maize and 2 kg ha−1 mm−1 in cotton. By a more effective use of the rotational delivery schedule, the yield gap could be partially closed, in particular if associated with other agronomic practices, namely nitrogen fertilization. The approach demonstrated the potential of combining field data collection with the use of AquaCrop to quantify the yield and WP gaps, and to propose management recommendations for closing the gaps.
机译:在轮换灌溉时间表下消除灌溉网络的局限性一直集中在改善基础设施上,而没有充分注意改善管理。我们开发了一种方法来评估阿根廷圣地亚哥德埃斯特罗市RíoDulce灌溉系统中的产量和水生产率差距。 AquaCrop模型用于确定在不同水资源管理方案下玉米和棉花的潜在产量和可达到的产量。实际产量和灌溉方式是通过实地调查和农民访谈确定的。 AquaGIS工具使用26年的每日气候数据库,有助于评估产量的时空变化。玉米的平均产量缺口(电位减去实际值)为6 t ha-1,棉花为2 t ha-1。玉米的平均水分生产率差距为7 kg ha-1 mm-1,棉花为2 kg ha-1 mm-1。通过更有效地利用轮作计划,可以部分弥补产量缺口,特别是如果与其他农艺措施(即氮肥)相关联的话。该方法证明了将田间数据收集与使用AquaCrop结合以量化产量和可湿性粉剂差距以及为缩小差距提出管理建议的潜力。

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