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Non-destructive coaxial transmission line measurements for dielectric soil characterization

机译:无损同轴传输线测量,用于介电土表征

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A high-frequency electromagnetic measurement technique is employed to investigate dielectric properties of a fine-grained soil. As a case study, a standardized compacted fine-grained soil was investigated using a coaxial transmission line cell in combination with vector network analyzer technique in a frequency range from 1 MHz to 3 GHz. The measurement results indicate that this type of sensor enables the broadband determination of soil dielectric spectra, i.e. the frequency dependent relative effective complex permittivity. Hence, with the introduced coaxial transmission line setup the dielectric relaxation behavior of the investigated soil can reliably characterize defined structural states. Moreover, it was found that dielectric material parameters at high frequencies are mainly related to the volume fractions of the soil phases, i.e. water content whereas at low frequencies to soil structure and density due to interface processes.
机译:高频电磁测量技术用于研究细粒土壤的介电性能。作为案例研究,使用同轴传输线单元结合矢量网络分析仪技术在1 MHz到3 GHz的频率范围内研究了标准化的压实细粒土壤。测量结果表明,这种类型的传感器能​​够宽带测定土壤介电谱,即与频率有关的相对有效复介电常数。因此,通过引入的同轴传输线设置,所研究土壤的介电弛豫行为可以可靠地表征定义的结构状态。此外,已经发现,高频下的介电材料参数主要与土壤相的体积分数即水含量有关,而低频下由于界面过程而对土壤结构和密度有影响。

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