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Estimate of soil hydraulic properties from disc infiltrometer three-dimensional infiltration curve: theoretical analysis and field applicability

机译:椎间盘渗透三维渗透曲线土壤液压性能估计:理论分析与现场适用性

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This paper describes a new method (NSQE) to estimate soil hydraulic properties (sorptivity, S, and hydraulic conductivity, K) from full-time cumulative infiltration curves. The technique relies on an inverse procedure involving the quasi-exact equation of Haverkamp et al. (1994). The numerical resolution is described and the sensitivity of the method is theoretically evaluated, showing that the accuracy of the estimates depends on the measured infiltration time. A new procedure to detect and remove the effect of the contact sand layer on the cumulative infiltration curve is also given. The method was subsequently compared to the differentiated linearization procedure (DL), which calculate K and S from the simplified Haverkamp et al. (1994) equation, valid only for short to medium times. A total of 264 infiltration measurements performed with a 10cm diameter disc under different soil conditions were used. Compared to the DL procedure, field measurements showed that the NSQE method allowed better estimates of soil hydraulic properties, independently on the infiltration noise and the presence of contact sand layer. Overall, although comparable S values were estimated with both methods, the longer infiltration times allowed by the proposed method made this procedure more accurate estimations of K. In conclusion, the NSQE method have shown to be a significant advance to accurate estimate of the soil hydraulic properties form the transient water flow.
机译:本文介绍了一种新的方法(NSQE),以从全日制累积渗透曲线估计土壤液压性能(吸附效率,S和液压导电性,K)。该技术依赖于涉及Haverkamp等人的准精确方程的逆过程。 (1994)。描述了数值分辨率,并且理论上评估了方法的灵敏度,表明估计的精度取决于测量的渗透时间。还给出了检测和去除接触砂层对累积渗透曲线上的效果的新方法。随后将该方法与分化的线性化程序(DL)进行比较,其从简化的Haverkamp等人计算K和S。 (1994)方程式,仅限于中等时间。使用在不同土壤条件下使用10厘米直径的椎间盘进行264次渗透测量。与DL程序相比,现场测量表明,NSQE方法允许更好地估计土壤液压性能,独立地估计渗透噪声和接触砂层的存在。总的来说,尽管使用两种方法估计了可比的S值,但所提出的方法允许的渗透时间较长,使得该程序更准确地估计K。总之,NSQE方法表明是对土壤液压准确估计的显着提前属性形成瞬态水流。

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