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Determination of Soil Pore Water Salinity Using an FDR Sensor Working at Various Frequencies up to 500 MHz

机译:使用工作频率高达500 MHz的FDR传感器确定土壤孔隙水的盐度

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摘要

This paper presents the application of a frequency-domain reflectometry (FDR) sensor designed for soil salinity assessment of sandy mineral soils in a wide range of soil moisture and bulk electrical conductivity, through the determination of soil complex dielectric permittivity spectra in the frequency range 10–500 MHz. The real part of dielectric permittivity was assessed from the 380–440 MHz, while the bulk electrical conductivity was calculated from the 165–325 MHz range. The FDR technique allows determination of bulk electrical conductivity from the imaginary part of the complex dielectric permittivity, without disregarding the dielectric losses. The soil salinity status was determined using the salinity index, defined as a partial derivative of the soil bulk electrical conductivity with respect to the real part of the soil complex dielectric permittivity. The salinity index method enables determining the soil water electrical conductivity value. For the five sandy mineral soils that have been tested, the relationship between bulk electrical conductivity and the real part of dielectric permittivity is essentially linear. As a result, the salinity index method applied for FDR measurements may be adapted to field use after examination of loam and clayey soils.
机译:本文介绍了一种频域反射法(FDR)传感器的应用,该传感器设计用于通过确定频率范围10中的土壤复介电常数谱来确定各种土壤水分和体积电导率的含沙矿物土壤的盐度。 –500 MHz。介电常数的实部是在380–440 MHz范围内评估的,而整体电导率是在165–325 MHz范围内计算的。 FDR技术允许从复介电常数的虚部确定体积电导率,而无需忽略介电损耗。使用盐度指数确定土壤的盐度状态,盐度指数定义为土壤体积电导率相对于土壤复介电常数的实部的偏导数。盐度指数法可以确定土壤水的电导率值。对于已测试的五种砂质矿物土壤,体积电导率与介电常数的实部之间的关系基本上是线性的。结果,应用于FDR测量的盐度指数方法可能适用于在检查壤土和黏土后的田间使用。

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