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Development of TDR Penetrometer through Theoretical and Laboratory Investigations: 2. Measurement of Soil Electrical Conductivity

机译:通过理论和实验室研究开发TDR渗透仪:2.测量土壤电导率

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A TDR penetrometer was introduced to allow simultaneous measurements of dielectric permittivity and electrical conductivity during cone penetration. This study focused on the theoretical development and experimental evaluation of electrical conductivity measurement using the TDR penetrometer. Theoretical development takes into account the cable resistance and nonconducting cone shaft, leading to a new data reduction equation and calibration procedure. Measurement sensitivity and spatial sampling bias were experimentally evaluated for various probe configurations. The results show that the measurement sensitivity of interest may be controlled by the geometric factor of the probe. The complication and implications of the spatial weighting bias are discussed. A prototype TDR penetrometer was calibrated and used to perform simulated penetration tests in a soil. Experimental results do not show significant errors in electrical conductivity due to the penetration disturbance, verifying the effectiveness of the TDR penetrometer for electrical conductivity measurement.
机译:引入了TDR针入度计,以允许同时测量锥体穿透过程中的介电常数和电导率。这项研究的重点是使用TDR渗透仪测量电导率的理论发展和实验评估。理论上的发展考虑了电缆的电阻和不导电的锥轴,从而产生了新的数据缩减公式和校准程序。通过实验评估了各种探头配置的测量灵敏度和空间采样偏差。结果表明,感兴趣的测量灵敏度可以由探针的几何因子控制。讨论了空间加权偏差的复杂性和含义。校准了原型TDR渗透仪,并用于在土壤中执行模拟渗透测试。实验结果并未显示出由于渗透干扰而导致的电导率显着误差,从而证明了TDR渗透仪在电导率测量中的有效性。

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