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Explaining soil moisture variability as a function of mean soil moisture: A stochastic unsaturated flow perspective

机译:解释土壤湿度随平均土壤湿度的变化:随机非饱和流的观点

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摘要

Understanding soil moisture variability and its relationship with water content at various scales is a key issue in hydrological research. In this paper we predict this relationship by stochastic analysis of the unsaturated Brooks-Corey flow in heterogeneous soils. Using sensitivity analysis, we show that parameters of the moisture retention characteristic and their spatial variability determine to a large extent the shape of the soil moisture variance-mean water content function. We demonstrate that soil hydraulic properties and their variability can be inversely estimated from spatially distributed measurements of soil moisture content. Predicting this relationship for eleven textural classes we found that the standard deviation of soil moisture peaked between 0.17 and 0.23 for most textural classes. It was found that the beta parameter, which describes the pore-size distribution of soils, controls the maximum value of the soil moisture standard deviation.
机译:在不同规模上,了解土壤水分变异性及其与含水量的关系是水文研究的关键问题。在本文中,我们通过对非均质土壤中非饱和布鲁克斯-科里流动的随机分析来预测这种关系。通过敏感性分析,我们表明,水分保持特性及其空间变异性的参数在很大程度上决定了土壤水分变异性-平均含水量函数的形状。我们证明了土壤的水力特性及其变异性可以通过土壤水分含量的空间分布测量结果进行反估计。预测11种质地类别的这种关系,我们发现大多数质地类别的土壤水分标准偏差在0.17至0.23之间达到峰值。发现描述土壤孔隙尺寸分布的β参数控制着土壤水分标准偏差的最大值。

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