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Construction and calibration of a field TDR monitoring station

机译:现场TDR监控站的建设和校准

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Time-Domain Reflectometry (TDR) has been used extensively in the past thirty years in order to measure soil water content and bulk electrical conductivity (EC~b), both in the laboratory and in the field. TDR can be effectively used in combination with geophysical techniques such as Ground Penetrating Radar (GPR) in order to provide information on relative dielectric permittivity and EC~b. As part of the Mapping the Underworld project, a TDR monitoring station was constructed with the aim of monitoring the geophysical parameters of the soil in a field case study. A rigorous methodology, utilizing the latest knowledge for calibration and analysis was followed and is thoroughly elucidated in this paper. The reasons behind the choice of the equipment setup are described, with the intention of providing a reference for similar TDR field installations. The precision and accuracy of TDR and the validation of the calibration procedures were assessed with laboratory and field tests. The standard deviation of several TDR measurements in the laboratory was on average smaller than 2% for both apparent permittivity and EC~b. The accuracy, expressed as the mean difference to reference values, was on average smaller than 2% and 3% of apparent permittivity and EC~b respectively, although higher errors, up to ≈ 5% and ≈ 7.5% respectively, were measured in media with very low apparent permittivity (i.e., air) and at EC~b values smaller than 0.0010 S/m. These results demonstrate that with the chosen methodology and setup, TDR can provide reliable data and can be used for long-term geophysical monitoring. The data provided by TDR monitoring stations could contribute to a data base of geophysical properties for soils. This information may eventually be used to assist the fine tuning of shallow geophysical techniques such as GPR.
机译:时域反射法(TDR)在过去的30年中已广泛用于在实验室和野外测量土壤含水量和体积电导率(EC〜b)。 TDR可以有效地与地球物理雷达(GPR)等地球物理技术结合使用,以提供有关相对介电常数和EC_b的信息。作为“映射地下世界”项目的一部分,建设了一个TDR监测站,目的是在现场案例研究中监测土壤的地球物理参数。遵循严格的方法,利用最新知识进行校准和分析,并在本文中进行了详细阐述。描述了选择设备设置背后的原因,旨在为类似的TDR现场安装提供参考。通过实验室和现场测试评估了TDR的精度和准确性以及校准程序的有效性。对于表观介电常数和EC_b,实验室中几种TDR测量的标准偏差平均均小于2%。准确度平均表示为与参考值的平均差,平均分别小于表观介电常数和EC〜b的2%和3%,尽管在介质中测得的较高误差分别高达≈5%和≈7.5%。具有很低的表观介电常数(即空气),并且EC_b值小于0.0010 S / m。这些结果表明,通过选择的方法和设置,TDR可以提供可靠的数据,并可用于长期地球物理监测。 TDR监测站提供的数据可有助于建立土壤地球物理特性数据库。该信息最终可用于辅助浅层地球物理技术(例如GPR)的微调。

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