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Error Analysis of Clay-Rock Water Content Estimation with Broadband High-Frequency Electromagnetic Sensors—Air Gap Effect

机译:宽带高频电磁传感器估算粘土岩含水量的误差分析—气隙效应

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摘要

Broadband electromagnetic frequency or time domain sensor techniques present high potential for quantitative water content monitoring in porous media. Prior to in situ application, the impact of the relationship between the broadband electromagnetic properties of the porous material (clay-rock) and the water content on the frequency or time domain sensor response is required. For this purpose, dielectric properties of intact clay rock samples experimental determined in the frequency range from 1 MHz to 10 GHz were used as input data in 3-D numerical frequency domain finite element field calculations to model the one port broadband frequency or time domain transfer function for a three rods based sensor embedded in the clay-rock. The sensor response in terms of the reflection factor was analyzed in time domain with classical travel time analysis in combination with an empirical model according to Topp equation, as well as the theoretical Lichtenecker and Rother model (LRM) to estimate the volumetric water content. The mixture equation considering the appropriate porosity of the investigated material provide a practical and efficient approach for water content estimation based on classical travel time analysis with the onset-method. The inflection method is not recommended for water content estimation in electrical dispersive and absorptive material. Moreover, the results clearly indicate that effects due to coupling of the sensor to the material cannot be neglected. Coupling problems caused by an air gap lead to dramatic effects on water content estimation, even for submillimeter gaps. Thus, the quantitative determination of the in situ water content requires careful sensor installation in order to reach a perfect probe clay rock coupling.
机译:宽带电磁频率或时域传感器技术在多孔介质中定量水含量监测方面具有很高的潜力。在原位应用之前,需要在多孔材料(粘土岩石)的宽带电磁特性与水含量之间的关系对频域或时域传感器响应产生影响。为此,将在1 MHz至10 GHz频率范围内实验确定的完整黏土样品的介电特性用作3-D数值频域有限元场计算中的输入数据,以模拟单端口宽带频率或时域传输嵌入粘土岩中的三杆传感器的功能。在时域中,通过经典行程时间分析,结合根据Topp方程的经验模型,以及理论上的Lichtenecker和Rother模型(LRM),以估计体积水含量,分析了传感器在反射系数方面的响应。考虑到所研究材料的适当孔隙率的混合方程式,为基于经典行程时间分析和起始方法的含水量估算提供了一种实用而有效的方法。不建议使用拐点法估算电分散和吸收性材料中的水含量。此外,结果清楚地表明,不能忽略由于传感器与材料的耦合而产生的影响。由气隙引起的耦合问题甚至对亚毫米间隙也导致对含水量估计的巨大影响。因此,定量测定原位水含量需要仔细安装传感器,以达到理想的探针粘土岩石耦合。

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