导水率
Pedotransfer函数
土壤科学
毛细管作用
比例(比率)
捆绑
土壤水分
岩土工程
水文学(农业)
地质学
材料科学
物理
量子力学
复合材料
作者
Behzad Ghanbarian,A. G. Hunt,Todd H. Skaggs,Nicholas Jarvis
标识
DOI:10.1016/j.advwatres.2017.03.016
摘要
Upscaling and/or estimating saturated hydraulic conductivity Ksat at the core scale from microscopic/macroscopic soil characteristics has been actively under investigation in the hydrology and soil physics communities for several decades. Numerous models have been developed based on different approaches, such as the bundle of capillary tubes model, pedotransfer functions, etc. In this study, we apply concepts from critical path analysis, an upscaling technique first developed in the physics literature, to estimate saturated hydraulic conductivity at the core scale from microscopic pore throat characteristics reflected in capillary pressure data. With this new model, we find Ksat estimations to be within a factor of 3 of the average measured saturated hydraulic conductivities reported by Rawls et al. (1982) for the eleven USDA soil texture classes.
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