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Effective Saturated Hydraulic Conductivity for Representing Field-Scale Infiltration and Surface Soil Moisture in Heterogeneous Unsaturated Soils Subjected to Rainfall Events

机译:有效的饱和导水率表示降雨事件对非均质非饱和土壤的场尺度渗透和表层土壤水分的影响

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Spatial heterogeneity in soil properties has been a challenge for providing field-scale estimates of infiltration rates and surface soil moisture content over natural fields. In this study, we develop analytical expressions for effective saturated hydraulic conductivity for use with the Green-Ampt model to describe field-scale infiltration rates and evolution of surface soil moisture over unsaturated fields subjected to a rainfall event. The heterogeneity in soil properties is described by a log-normal distribution for surface saturated hydraulic conductivity. Comparisons between field-scale numerical and analytical simulation results for water movement in heterogeneous unsaturated soils show that the proposed expressions reproduce the evolution of surface soil moisture and infiltration rate with time. The analytical expressions hold promise for describing mean field infiltration rates and surface soil moisture evolution at field-scale over sandy loam and loamy sand soils.
机译:土壤性质的空间异质性一直是提供田间尺度上自然田的入渗速率和表层土壤水分含量估计的挑战。在这项研究中,我们开发了与Green-Ampt模型一起使用的有效饱和水力传导率的解析表达式,用于描述田间尺度的渗透率和遭受降雨事件的非饱和田地表层土壤水分的演变。土壤特性的异质性通过表面饱和水力传导率的对数正态分布来描述。田间尺度数值模拟和非均质非饱和土壤水运动模拟结果的比较表明,所提出的表达式再现了表层土壤水分和入渗率随时间的演变。这些分析表达式有望描述沙质壤土和质壤土在田间尺度上的平均田间入渗速率和表层土壤水分演变。

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