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Monte Carlo Analysis Of Field Water Flow Comparing Uni- And Bimodal Effective Hydraulic Parameters For Structured Soil

机译:蒙特卡洛分析法比较结构化土单,双峰有效水力参数的田间水流

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Soil structure critically affects the hydrological behaviour of soils. In this paper, we examined the impact of areal heterogeneity of hydraulic properties of a structured soil on soil ensemble behaviour for various soil water flow processes with different top boundary conditions (redistribution and drainage plus evaporation and infiltration). Using a numerical solution of the Richards' equation in a stochastic framework, the ensemble characteristics and flow dynamics were studied for drying and wetting processes observed during a time interval of ten days when a series of relatively intense rainfall events occurred. The effects of using unimodal and bimodal interpretative models of hydraulic properties on the ensemble hydrological behaviour of the soil were illustrated by comparing predictions to mean water contents measured over time in several sites at field scale. Although the differences between unimodal and bimodal fitting are not significant in terms of goodness of fit, the differences in process predictions are considerable with the bimodal soil simulating water content measurements much better than unimodal soil. We also investigated the relative contribution of the soil variability of each parameter on the variance of the water contents obtained as the main output of the stochastic simulations. The variability of the structural parameter, weighting the two pore space fractions in the bimodal interpretative model, has the largest contribution to water content variance. The contribution of each parameter depends only partly on the coefficient of variation, much more on the sensitivity of the model to the parameters and on the flow process being observed. We observed that the contribution of the retention parameters to uncertainty increases during drainage processes; the opposite occurs with the hydraulic conductivity parameters.
机译:土壤结构严重影响土壤的水文行为。在本文中,我们研究了结构性土壤的水力特性的区域异质性对具有不同顶部边界条件(分配和排水加上蒸发和渗透)的各种土壤水流过程的土壤整体行为的影响。使用随机框架中的Richards方程的数值解,研究了在一系列相对强烈的降雨事件发生的十天时间间隔内观察到的干燥和润湿过程的集合特征和流动动力学。通过比较田间尺度上几个地点随时间测量的平均含水量的预测,说明了使用水力特性的单峰和双峰解释模型对土壤整体水文行为的影响。尽管就拟合优度而言,单峰拟合与双峰拟合之间的差异并不显着,但过程预测的差异却是巨大的,因为双峰土壤模拟水含量的测量要好于单峰土壤。我们还研究了每个参数的土壤变异性对作为随机模拟的主要输出获得的水含量变化的相对贡献。在双峰解释模型中加权两个孔隙空间分数的结构参数的可变性对含水量变化的影响最大。每个参数的贡献仅部分取决于变化系数,更多取决于模型对参数的敏感性以及所观察到的流动过程。我们观察到,在排水过程中,保留参数对不确定性的贡献增加。导水率参数则相反。

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