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首页> 外文期刊>Vadose zone journal VZJ >Accuracy of Bulk Electrical Conductivity Measurements with Time Domain Reflectometry
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Accuracy of Bulk Electrical Conductivity Measurements with Time Domain Reflectometry

机译:时域反射法测量大体积电导率的准确性

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Accurate determination of bulk electrical conductivity with time domain reflectometry (TDR) requires calibration or direct measurement of the probe constant and the cable resistance. The aims of this study were threefold. First, the accuracy of an analytical expression for the direct determination of the probe constant was evaluated for three TDR probe designs by comparing the analytical result with the probe constant obtained by calibration to TDR measurements in solutions with varying electrical conductivity. Second, the accuracy of direct measurement of cable resistance was compared with the accuracy that can be achieved by calibrating this resistance. The uncertainty in directly measured and calibrated probe and cable properties was determined in a Monte Carlo analysis. The results showed that the analytical expression for the probe constant and calibration of the probe constant do not provide significantly different estimates when the uncertainty in both approaches is considered; however, theuncertainty in the calibrated probe constants was lower than or similar to the uncertainty in the direct measurements. Directly measured and calibrated cable resistance differed, which was attributed to recording time issues. It was concluded that calibration of probe and cable parameters should be preferred over direct measurements to achieve accurate bulk electrical conductivity measurements. The final aim of this study was to quantify how the various sources of uncertainty identified in this study affect the accuracy of TDR bulk conductivity measurements. This uncertainty analysis showed that the accuracy of TDR ranges between 0.6 and 1.2% of the bulk electrical conductivity if the reflection coefficient varies between 0.75 and 0.75. Outside this range, the accuracy of the bulk electrical conductivity measurements made with TDR is lower.
机译:使用时域反射仪(TDR)准确确定体积电导率需要校准或直接测量探头常数和电缆电阻。这项研究的目的是三方面的。首先,通过将分析结果与通过在电导率变化的溶液中对TDR测量进行校准获得的探针常数进行比较,来评估三种TDR探针设计的直接确定探针常数的分析表达式的准确性。其次,将直接测量电缆电阻的精度与通过校准该电阻可以达到的精度进行了比较。通过蒙特卡洛分析确定直接测量和校准的探头和电缆属性的不确定性。结果表明,当同时考虑两种方法的不确定性时,探针常数的分析表达式和探针常数的校准值不会提供明显不同的估计值。但是,校准后的探针常数的不确定性低于或类似于直接测量中的不确定性。直接测量和校准的电缆电阻有所不同,这归因于记录时间问题。结论是,探头和电缆参数的校准应优于直接测量,以实现准确的整体电导率测量。本研究的最终目的是量化本研究中确定的各种不确定性源如何影响TDR体积电导率测量的准确性。这种不确定性分析表明,如果反射系数在0.75到0.75之间变化,则TDR的精度将在整体电导率的0.6到1.2%之间。在此范围之外,使用TDR进行的整体电导率测量的准确性较低。

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