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Prediction of the saturated hydraulic conductivity from Brooks and Corey's water retention parameters

机译:根据Brooks和Corey的保水参数预测饱和导水率

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摘要

Prediction of flow through variably saturated porous media requires accurate knowledge of the soil hydraulic properties, namely the water retention function (WRF) and the hydraulic conductivity function (HCF). Unfortunately, direct measurement of the HCF is time consuming and expensive. In this study, we derive a simple closed-form equation that predicts the saturated hydraulic conductivity, K_s from the WRF parameters of Brooks and Corey (1964). This physically based analytical expression uses an empirical tortuosity parameter (τ) and exploits the information embedded in the measured pore-size distribution. Our proposed model is compared against the current state of the art using more than 250 soil samples from the Grenoble soil catalog (GRIZZLY) and hydraulic properties of European soils (HYPRES) databases. Results demonstrate that the proposed model provides better predictions of the saturated hydraulic conductivity values with reduced size of the 90% confidence intervals of about 3 orders of magnitude.
机译:预测通过可变饱和多孔介质的流量需要准确了解土壤的水力特性,即保水率函数(WRF)和水力传导率函数(HCF)。不幸的是,直接测量HCF既费时又昂贵。在这项研究中,我们得出了一个简单的闭合形式方程,该方程根据Brooks和Corey(1964)的WRF参数来预测饱和导水率K_s。这种基于物理的分析表达式使用经验曲折参数(τ)并利用嵌入在测得的孔径分布中的信息。我们使用来自格勒诺布尔土壤目录(GRIZZLY)的250多个土壤样品和欧洲土壤的水力特性(HYPRES)数据库,将我们提出的模型与现有技术进行了比较。结果表明,所提出的模型在减小约3个数量级的90%置信区间大小的情况下,可以更好地预测饱和水力传导率值。

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  • 来源
    《Water resources research》 |2013年第5期|2918-2925|共8页
  • 作者单位

    Department of Civil and Environmental Engineering, University of California, Irvine, California, USA,Department of Agriculture, Division of Agricultural, Forest and Biosystems Engineering, University of Napoli Federico Ⅱ, Napoli, 1-80055, Italy;

    Department of Civil and Environmental Engineering, University of California, Irvine, California, USA;

    Department of Agriculture, Division of Agricultural, Forest and Biosystems Engineering, University of Napoli Federico Ⅱ, Napoli, Italy;

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