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Combining Evapotranspiration and Soil Apparent Electrical Conductivity Mapping to Identify Potential Precision Irrigation Benefits

机译:结合蒸发和土壤表观电导率映射来识别潜在的精密灌溉效益

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摘要

Precision irrigation optimizes the spatiotemporal application of water using evapotranspiration (ET) maps to assess water stress or soil apparent electrical conductivity (ECa) maps as a proxy for plant available water content. However, ET and ECa maps are rarely used together. We developed high-resolution ET and ECa maps for six irrigated fields in the Midwest United States between 2014−2016. Our research goals were to (1) validate ET maps developed using the High-Resolution Mapping of EvapoTranspiration (HRMET) model and aerial imagery via comparison with ground observations in potato, sweet corn, and pea agroecosystems; (2) characterize relationships between ET and ECa; and (3) identify potential precision irrigation benefits across rotations. We demonstrated the synergy of combined ET and ECa mapping for evaluating whether intrafield differences in ECa correspond to actual water use for different crop rotations. We found that ET and ECa have stronger relationships in sweet corn and potato rotations than field corn. Thus, sweet corn and potato crops may benefit more from precision irrigation than field corn, even when grown rotationally on the same field. We recommend that future research consider crop rotation, intrafield soil variability, and existing irrigation practices together when determining potential water use, savings, and yield gains from precision irrigation.
机译:精密灌溉使用蒸发(et)地图优化水的时空施加水应用,以评估水分应激或土壤表观电导率(ECA)图作为植物可用含水量的代理。但是,ET和ECA地图很少使用。我们在2014 - 2016年期间开发了美国中西部六个灌溉领域的高分辨率ET和ECA地图。我们的研究目标是(1)通过与马铃薯,甜玉米和豌豆农业体系的地面观测相比,使用evapotranspiration(HRMET)模型和空中图像的高分辨率映射开发的验证等地图; (2)表征ET与ECA之间的关系; (3)识别跨越旋转潜在的精密灌溉效益。我们证明了组合ET和ECA映射的协同作用,用于评估ECA中的Intrafield差异是否对应于不同作物旋转的实际用水。我们发现ET和ECA在甜玉米和薯条的关系中具有比野玉米的较强的关系。因此,即使在同一领域上旋转生长,甜玉米和马铃薯作物也可能受益于比野玉米的精确灌溉。我们建议未来的研究考虑在确定潜在的用水,节省和从精密灌溉中获得的逐步旋转,内部土壤变异性和现有的灌溉实践。

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