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Analyzing the behavior of GPR wave propagation in zinc contaminated soil combining the dielectric properties—experimental study

机译:介电特性实验研究结合锌污染土壤污染土壤污染土壤脉络波传播的行为

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There is a very strong link between the behavior of ground penetrating radar (GPR) wave propagation in zinc-contaminated soil and the dielectric properties of soil. This relationship can be of significant use in the practices of quick detecting the degree of pollution in zinc-contaminated soil. In this research, measurements were conducted on the zinc-contaminated soil samples with different soil index properties (i.e., zinc ion concentration, wet density and moisture content). The radar reflection wave data of the common midpoint and common-offset sounding mode were obtained by using the 600 MHz antenna, and the relative permittivity was measured using the vector network analyzer. The attribute analysis of radar reflection wave shows that the wave velocity is affected by wet density and moisture content, but independent of zinc ion concentration. Both the amplitude and the peak frequency decrease with the increase in zinc ion concentration, wet density and moisture content. For the soil dielectric properties, the metal ions can change the conductivity of solution in soil, affecting the imaginary part of relative permittivity, but with little effect on the real part. The positive correlations between the relative permittivity with density and moisture content are caused by the variation of three-phase composition of soil. Besides, the measured soil dielectric properties and the radar reflected wave attributes confirm each other, which can well explain the change rules of electromagnetic wave velocity, amplitude and central frequency. The presented results can increase understanding and confidence on GPR for quantitative monitoring and detecting of zinc-contaminated soil.
机译:锌污染土壤中地面穿透雷达(GPR)波传播的行为与土壤介电性能之间存在非常强烈的联系。这种关系对于快速检测锌污染土壤污染程度的实践可能具有重要用途。在该研究中,在具有不同土壤指数特性的锌污染的土壤样品上进行测量(即,离子浓度,湿密密度和水分含量)。通过使用600MHz天线获得公共中点和共同偏移探测模式的雷达反射波数据,使用矢量网络分析仪测量相对介电常数。雷达反射波的属性分析表明,波速受湿密密度和水分含量的影响,但与锌离子浓度无关。随着锌离子浓度,湿密密度和水分含量的增加,幅度和峰值频率均降低。对于土壤介电性质,金属离子可以改变土壤中溶液的导电性,影响相对介电常数的虚部,但对实际部分影响很小。密度和水分含量与密度和水分含量之间的正相关性是由土壤三相组成的变化引起的。此外,测量的土壤电介质特性和雷达反射波属性彼此确认,这可以很好地解释电磁波速度,幅度和中心频率的变化规则。所呈现的结果可以提高对GPR的理解和信心,以进行锌污染土壤的定量监测和检测。

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