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Variable Pulsed Irrigation Algorithm (VPIA) to Reduce Runoff Losses under a Low-Pressure Lateral Move Irrigation Machine

机译:低压侧移灌溉机下可变脉冲灌溉算法(VPIA)减少径流损失

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Due to restrictions and limitations on agricultural water worldwide, one of the most effective ways to conserve water in this sector is to reduce the water losses and improve irrigation uniformity. Nowadays, the low-pressure sprinkler has been widely used to replace the high-pressure impact sprinklers in lateral move sprinkler irrigation systems due to its low operating cost and high efficiency. However, the hazard of surface runoff represents the biggest obstacle for low-pressure sprinkler systems. Most researchers have used the pulsing technique to apply variable-rate irrigation to match the crop water needs within a normal application rate that does not produce runoff. This research introduces a variable pulsed irrigation algorithm (VPIA) based on an ON–OFF pulsing technique to conserve irrigation water through (1) decreasing the runoff losses by considering the soil infiltration rate, surface storage capacity, and sprinkler wetting diameter; and (2) ensuring a high level of water distribution uniformity in the direction of machine movement. From a wide range of pulse numbers and widths tested applying a certain water depth to a sandy loam soil, the best solution that gives the lowest runoff and highest uniformity while delivering an acceptable water depth was selected. A MATLAB code was written to simulate the soil infiltration rate, the sprinkler application rate, and to apply the proposed algorithm. The simulation results showed a runoff reduction of at least 90.7% with a high level of distribution uniformity in the direction of movement while delivering the highest possible irrigation depth using the lowest number of pulses.
机译:由于全球范围内对农业用水的限制和局限,该部门节水的最有效方法之一是减少水的流失并提高灌溉的均匀性。如今,由于低压喷头的低运行成本和高效率,它已被广泛用于代替侧向移动喷头灌溉系统中的高压冲击喷头。然而,地表径流的危害是低压喷淋系统的最大障碍。大多数研究人员已使用脉冲技术进行可变速率的灌溉,以在不产生径流的正常施用量内匹配作物的需水量。这项研究引入了一种基于ON-OFF脉冲技术的可变脉冲灌溉算法(VPIA),以通过以下方式节约灌溉用水:(1)通过考虑土壤的入渗速率,表面存储能力和喷头湿润直径来减少径流损失; (2)确保在机器运动方向上高度的水分配均匀性。从将一定水深应用于砂壤土的各种脉冲数和宽度进行了测试,选择了在提供可接受的水深的同时提供最低径流量和最高均匀度的最佳解决方案。编写了一个MATLAB代码来模拟土壤入渗率,洒水喷洒率和应用所提出的算法。模拟结果显示,径流减少至少90.7%,并且在运动方向上具有较高的分布均匀性,同时使用最少的脉冲数提供了最大可能的灌溉深度。

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