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Optimal discharge for closed-end border irrigation under soil infiltration variability

机译:土壤渗透变异下闭端边界灌溉的最佳放电

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摘要

Traditional border irrigation designs have rarely considered that soil infiltration can vary. The design of border irrigation systems can be improved by the optimization of border irrigation discharge. Therefore, the objectives of this study were (1) to expand the scope of the existing model for estimating and verifying the performance indicators of closed-end border irrigation; (2) to analyze the effect of infiltration variability on infiltration depth variability of closed-end border irrigation; and (3) to propose a method for determining the optimal discharge of closed-end border irrigation for variable soil. Physical and simulated experiments were conducted. The results revealed that for both variable and uniform soil, the estimated irrigation performance indicators were in good agreement with the measured values as well as values simulated using WinSRFR 4.1; the corresponding mean relative errors were less than 10%. The variance of infiltration variability explained a high percentage of the variance in infiltrated water depth (51.71%-95.68%). The optimal discharges were consistent for both variable and uniform soils, signifying that the optimal discharge of uniform soil can be used for the discharge design of a closed-end border irrigation system in variable soil.
机译:传统的边境灌溉设计很少认为土壤渗透可能会有所不同。边界灌溉放电的优化可以改善边界灌溉系统的设计。因此,本研究的目标是(1)扩大现有模型的范围,以估算和验证闭合终端灌溉的绩效指标; (2)分析渗透变异对闭合边界灌溉渗透深度变异性的影响; (3)提出一种确定可变土壤封闭边界灌溉最佳排放的方法。进行了物理和模拟实验。结果表明,对于可变和均匀的土壤,估计的灌溉性能指标与测量值吻合良好,以及使用WinSRFR 4.1模拟的值;相应的平均相对误差小于10%。渗透变异性的差异解释了渗透水深度的高百分比(51.71%-95.68%)。可变和均匀的土壤,最佳放电是一致的,这表示均匀土壤的最佳排放可用于可变土壤中闭端边界灌溉系统的放电设计。

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