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Hydraulic Conductivity of Saturated Soil Medium through Time-Domain Reflectometry

机译:通过时域反射测量法的饱和土培养基液压导电性

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摘要

Time-domain reflectometry (TDR) has been extensively used to study soil behaviors. The objective of this study is to propose a method for measuring hydraulic conductivity using TDR. The dielectric constant deduced from TDR is influenced by the electrical resistance of the medium, and it can be converted into the electrical resistivity of the material. Thus, the theoretical relationship between the dielectric constant and hydraulic conductivity is established because electrical resistivity is a function of hydraulic conductivity. A cell is developed for measuring both the dielectric constant and hydraulic conductivity simultaneously. Three electrodes are used to measure the reflected waveform by using the principle of TDR. The following specimens are used to verify the proposed technique: glass beads, Jumunjin sand, and soil extracted from a field. The dielectric constant is converted into hydraulic conductivity, and it is compared with the value determined by a constant-head experiment for reference. The comparison shows a high similarity. Verification is also carried out through field experiments. This study demonstrates that the proposed method is an alternative method to find the hydraulic conductivity through TDR.
机译:时域反射率(TDR)已被广泛用于研究土壤行为。本研究的目的是使用TDR提出测量液压导电性的方法。从TDR推导的介电常数受介质的电阻的影响,并且可以转换成材料的电阻率。因此,建立了介电常数和液压导电性之间的理论关系,因为电阻率是液压导电性的函数。开发电池,用于同时测量介电常数和液压导电性。三个电极通过使用TDR的原理来测量反射波形。以下标本用于验证所提出的技术:玻璃珠,Jumunjin沙子和从场中提取的土壤。介电常数被转换成液压导率,并将其与由恒定头实验确定的值进行比较,以参考。比较显示了高相似性。验证也通过现场实验进行。本研究表明,该方法是通过TDR找到液压导电性的替代方法。

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