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An operator approach for modelling the interdependence between the soil water boundary wetting and drying curves

机译:一种用于建模土壤水边界润湿曲线相互依存的操作方法

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In this study the relationship between two families of pairwise associated functions, describing boundary wetting and drying curves, is modelled. This relationship includes both regular and random constituents, and it is represented by a limited dataset of N known pairs of these curves, which pertain to N different soils. Using the dependent domain theory of hysteresis, we show that the regular constituent in this relationship can be described by a linear integral operator that, for a given input measured boundary wetting curve, predicts its associated boundary drying curve. The operator is optimized to reduce the influence of the random scattering of the pairs of curves. The optimization of the operator is performed with respect to the given input measured boundary wetting curve using a representative calibration dataset of k (κ<N) pairs of curves, which are a part of the N available measured pairs. The optimized operator should satisfy two opposite conditions: (ⅰ) the best possible accuracy at reproducing the boundary drying curves used for operator optimization, and (ⅱ) the least possible sensitivity with respect to excluding any one pair from the calibration dataset.We also apply the suggested modelling approach for derivation of the inverse operator model that predicts the boundary wetting curves from their associated measured boundary drying curves, with possibility of verification of the predictive reliability. The predictive performance of both operator models is mainly good, and their reliability can be permanently enhanced by updating them with new incoming measured data.
机译:在这研究中,建模了描述边界润湿和干燥曲线的两组系列族之间的关系。这种关系包括常规和随机成分,并且它由N已知的这些曲线的有限数据集表示,这些曲线有关n不同的土壤。使用滞后的依赖域理论,我们表明这种关系中的常规组成部分可以由线性积分操作者描述,即对于给定的输入测量的边界润湿曲线,预测其相关的边界干燥曲线。操作员经过优化,以减少对曲线对的随机散射的影响。使用K(κ

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