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首页> 外文期刊>Journal of water resource and protection >Development and Testing of a Variable Rate Nitrogen Application System through an Overhead Irrigation System
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Development and Testing of a Variable Rate Nitrogen Application System through an Overhead Irrigation System

机译:通过架空灌溉系统开发和测试可变速率氮肥施用系统

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Nutrients are injected through overhead irrigation systems at a uniform rate in a process known as fertigation. The highly variable soils in the Southeastern US pose challenges for effective fertigation. Currently, there is no variable-rate fertigation system available to apply the correct amount of N within a field through an overhead irrigation system. Therefore, the objective of this study was to develop and test a variable-rate N application system that works independently of irrigation water flow for site-specific N application. The variable-rate fertigation system (VRFS) was designed to apply different rates N using a pulse width modulation technique. The VRFS utilized the Clemson Lateral Irrigation Control software which controlled the solenoids in each zone by turning the N supply on and off (pulsing) for each zone. In this study, four tests were conducted to determine the uniformity of the VRFS. In test # 1, the pump output showed a linear slope relationship and was the same for water and N. In test # 2, nozzle flow and uniformity were determined using four different irrigation system travel speeds at N application rates of 31, 59, 88, and 113 kg/ha. There was a strong correlation (R~2 = 0.9998) between irrigation system speed and N rate. In test # 3, the uniformity across the length of the irrigation system was determined. The nozzles produced an average flow of 31.1, 58.7, 87.6, and 112.7 kg N/ha with an overall average error of 0.1% across all N rates. Results also showed the system was capable of accurately applying N based on prescription maps with an error of less than 1.8%. Test # 4 was conducted to determine the accuracy of the map-based controller system for applying variable rate N. There was a strong correlation between target N and actual N rates (R~2 = 0.9999). In summary, the VRFS applied the correct amounts of N within each zone by either manually controlling the pulsing mechanism or utilizing a prescription map to apply different rates throughout the field.
机译:通过高架灌溉系统以均匀施肥的方式将营养液以均匀的速率注入。美国东南部高度变化的土壤为有效施肥提出了挑战。当前,没有可变速率的施肥系统可用于通过高架灌溉系统在田间施用正确量的氮。因此,本研究的目的是开发和测试可变速率的氮肥施用系统,该系统与灌溉水流量无关,可以针对特定地点施用氮肥。可变速率施肥系统(VRFS)设计为使用脉冲宽度调制技术施加不同的速率N。 VRFS使用了Clemson侧向灌溉控制软件,该软件通过打开和关闭每个区域的N供应(脉冲)来控制每个区域中的螺线管。在这项研究中,进行了四个测试以确定VRFS的均匀性。在试验1中,泵的输出呈线性斜率关系,并且与水和氮相同。在试验2中,在N,31、59、88的施药量下,使用四种不同的灌溉系统行进速度确定了喷嘴流量和均匀度和113公斤/公顷。灌溉系统速度与氮素含量之间有很强的相关性(R〜2 = 0.9998)。在测试3中,确定了灌溉系统整个长度上的均匀性。喷嘴产生的平均流量为31.1、58.7、87.6和112.7 kg N / ha,在所有N速率下的总平均误差为0.1%。结果还表明,该系统能够基于处方图准确地应用N,误差小于1.8%。进行了测试4,以确定应用可变比率N的基于地图的控制器系统的准确性。目标N和实际N比率之间存在很强的相关性(R〜2 = 0.9999)。总而言之,VRFS通过手动控制脉冲机制或利用处方图在整个油田中应用不同的比率,在每个区域内应用了正确的N量。

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