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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Improving unsaturated hydraulic conductivity estimation in soils via percolation theory
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Improving unsaturated hydraulic conductivity estimation in soils via percolation theory

机译:通过渗透理论改善不饱和液压导电性估计

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Accurate estimation of unsaturated hydraulic conductivity K(S-w) in soils has been of great interest to soil physicists and hydrologists in the past several decades. Although various methods such as a "bundle of capillary tubes" conceptual approach were applied in the literature to theoretically model hydraulic conductivity in term of water saturation, in this study we invoke percolation theory, which quantifies the effect of the interconnectivity of pores on the macroscopic fluid flow. We incorporate the pore-solid interface roughness effect in the hydraulic conductance-pore radius (g-r) relationship, evaluate our K(S-w) model using 104 soil samples from the UNSODA database as well as another 20 soil samples from the Rijtema database, and compare it to the Ghanbarian-Alavijeh and Hunt (2012) model. Generally speaking, we experimentally demonstrate that K(S-w) estimations were improved over the entire range of water saturation when the surface roughness effect was incorporated. However, our model still underestimates the unsaturated hydraulic conductivity at low water saturations (corresponding to K(S-w) 10(-4) cm/day). We show that after eliminating the effect of non equilibrium conditions in the measurements K(S-w) estimations were improved substantially. Other plausible sources for K(S-w) underestimation are also discussed.
机译:准确估计在过去几十年的土壤物理学家和水文学中,土壤中的不饱和液压导电性k(S-W)估计非常感兴趣。尽管在本研究中,在文献中应用了诸如“毛细管束”概念性的概念性方法,但在本研究中,在水饱和期间,在水饱和期间进行了液压导电性,我们调用渗透理论,这使得孔隙互连对宏观的效应量化了渗透性理论流体流动。我们将孔径界面粗糙度效应纳入液压导电 - 孔径半径(GR)关系,使用来自Unsoda数据库的104个土壤样本以及来自Rijtema数据库的另外20个土壤样本来评估我们的K(SW)模型,并比较它到了加兰纳 - 阿拉瓦赫和亨特(2012年)模型。一般而言,我们通过实验证明K(S-W)估计在掺入表面粗糙度效应时在整个水饱和范围内得到改善。然而,我们的模型仍然低于低水饱和饱和饱和液态电导率(对应于K(S-W)<10(-4)厘米/天)。我们表明,在消除了测量中的非平衡条件的效果之后,K(S-W)显着改善了估算。还讨论了K(S-W)低估的其他合理的来源。

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