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Development and Evaluation of a Variable-Rate Irrigation Management Method in the Mississippi Delta

机译:密西西比三角洲可变速率灌溉管理方法的开发与评价

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Variable-rate irrigation (VRI) allows producers to site-specifically apply irrigation water at variable rates within a field to account for the temporal and spatial variability in soil and plant characteristics. Developing practical VRI methods and documenting the benefits of VRI application are critical to accelerate the adoption of VRI technologies. Using apparent soil electrical conductivity (ECa) and soil moisture sensors, a VRI method was developed and evaluated with corn and soybean for five crop years in the Mississippi Delta. Soil ECa of the study fields was mapped and used to delineate VRI management zones and create VRI prescriptions. Irrigation was scheduled using soil volumetric water content measured by soil moisture sensors. A center pivot VRI system was employed to deliver irrigation water according to the VRI prescription. Grain yield, irrigation water use, and irrigation water productivity in the VRI treatment were determined and compared with that in a uniform-rate irrigation (URI) treatment. Results showed that the grain yield and irrigation water productivity between the VRI and URI treatments were not statistically different with both corn and soybean crops. The VRI management significantly reduced the amount of irrigation water by 22% in corn and by 11% in soybean (p ≤ 0.05). Adoption of VRI management could improve irrigation water use efficiency in the Mississippi Delta.
机译:变量灌溉(VRI)允许生产商在田间以变量特定地点施用灌溉水,以说明土壤和植物特性的时间和空间变异性。开发实用的VRI方法并记录VRI应用的好处对于加快VRI技术的采用至关重要。利用表观土壤电导率(ECa)和土壤水分传感器,开发了一种VRI方法,并对密西西比三角洲五年种植的玉米和大豆进行了评估。绘制了研究区域的土壤ECa图,并用于划定VRI管理区和制定VRI处方。灌溉计划使用土壤水分传感器测量的土壤体积含水量。根据VRI处方,采用中心枢轴VRI系统输送灌溉水。测定了VRI处理的粮食产量、灌溉用水和灌溉水分生产力,并与均匀灌溉(URI)处理进行了比较。结果表明,玉米和大豆作物的产量和灌溉水分生产力在VRI和URI处理之间没有统计学差异。VRI管理显著减少了22%的玉米灌溉水量和11%的大豆灌溉水量(p≤ 0.05). 采用VRI管理可以提高密西西比三角洲的灌溉用水效率。

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