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Real-time prediction of soil infiltration characteristics for the management of furrow irrigation

机译:沟灌管理中土壤入渗特征的实时预测

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摘要

The spatial and temporal variations commonly found in the infiltration characteristic for surface-irrigated fields are a major physical constraint to achieve higher irrigation application efficiencies. Substantial work has been directed towards developing methods to estimate the infiltration characteristics of soil from irrigation advance data. However, none of the existing methods are entirely suitable for use in real-time control. The greatest limitation is that they are data intensive. A new method that uses a model infiltration curve (MIC) is proposed. In this method a scaling process is used to reduce the amount of data required to predict the infiltration characteristics for each furrow and each irrigation event for a whole field. Data from 44furrow irrigation events from two different fields were used to evaluate the proposed method. Infiltration characteristics calculated using the proposed method were compared to values calculated from the full advance data using the INFILT computer model. The infiltration curves calculated by the proposed method were of similar shape to the INFILT curves and gave similar values for cumulative infiltration up to the irrigation advance time for each furrow. More importantly the statistical properties of the two sets of infiltration characteristics were similar. This suggests that they would return equivalent estimates of irrigation performance for the two fields and that the proposed method could be suitable for use in real-time control.
机译:通常在地表灌溉田的入渗特征中发现的时空变化是获得更高灌溉应用效率的主要物理约束。大量工作已针对开发方法以从灌溉提前数据估算土壤的入渗特性。但是,没有一种现有方法完全适合用于实时控制。最大的限制是它们是数据密集型的。提出了一种使用模型渗透曲线(MIC)的新方法。在这种方法中,使用缩放过程来减少预测整个田地每个犁沟和每个灌溉事件的入渗特征所需的数据量。来自两个不同领域的44次沟灌事件的数据被用来评估该方法。将使用建议的方法计算的入渗特性与使用INFILT计算机模型从全部提前数据计算出的值进行比较。通过所提出的方法计算的入渗曲线具有与INFILT曲线相似的形状,并给出了每个犁沟直至灌溉提前时间的累积入渗值。更重要的是,两组渗透特性的统计特性是相似的。这表明他们将返回两个田的灌溉性能的等效估计值,并且所提出的方法可能适用于实时控制。

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