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Column test apparatus for the inverse estimation of soil hydraulic parameters under defined stress condition

机译:定义应力条件下土壤水力参数反推的柱试验装置

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摘要

The experimental determination of soil hydraulic properties (soil water characteristic curve and unsaturated conductivity) over a large range of saturation is of utmost importance for any prediction of soil water dynamics and for evaluation of soil mechanical behaviour of unsaturated soils. However the hydraulic properties are expected to vary under stress, since inter alia they are mainly determined by the pore structure, which itself depends on the density of the soil and thus on the stress condition. A column test apparatus was developed to carry out multi-step outflow and inflow experiments under defined stress conditions on samples 45 cm in height and with a diameter of 19 cm. The simultaneous recording of pressure and changes in water content within the soil column at a reasonable temporal and spatial resolution is of crucial importance for the inverse parameter estimation process. A new measuring technique based on the method of Time-Domain-Reflectometry (TDR) permits the recording of continuos water profiles over the sample at a high temporal resolution. Transient in/outflow rates, water content profiles as well as tensiometer readings allow a detailed inspection of the hydraulic processes and yield a suitable data set for a more unique inverse parameter estimation. In the following paper the test apparatus will be introduced and results of an experiment will be presented.
机译:在任何饱和土壤动力学预测和评价非饱和土壤的土壤力学行为方面,实​​验确定大饱和度范围内的土壤水力学特性(土壤水特征曲线和非饱和电导率)至关重要。然而,预期水力学性质在应力下会变化,因为它们尤其主要由孔结构决定,该孔结构本身取决于土壤的密度,并因此取决于应力条件。开发了一种柱测试设备,以在限定的应力条件下对高度为45 cm,直径为19 cm的样品进行多步流出和流入实验。以合理的时间和空间分辨率同时记录土柱内的压力和含水量的变化对于反参数估计过程至关重要。一种新的基于时域反射法(TDR)的测量技术,可以以高时间分辨率在样品上记录连续水剖面。瞬态流入/流出速率,水含量曲线以及张力计读数允许对液压过程进行详细检查,并生成合适的数据集以进行更独特的反参数估算。在下面的论文中,将介绍测试设备并提供实验结果。

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