首页> 外文会议>2019 Applications of Electromagnetics in Modern Engineering and Medicine >Analysis of the possibility of identifying the rheological structure of soil by the Ground Penetrating Radar and EM conductivity methods
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Analysis of the possibility of identifying the rheological structure of soil by the Ground Penetrating Radar and EM conductivity methods

机译:探地雷达和电导率法识别土壤流变结构的可能性分析

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In this study, we attempt to evaluate the rheological properties of soil via its degree of compaction using integrated geophysical methods. The results may be useful for the characterization of soil particularly when its optimum utilizations are inclined towards agriculture. This is so vital because soil compaction results into its degradation and hence plants which depend solely on it for existence are affected. Ground Penetrating Radar (GPR) and Ground Conductivity Meter (GCM) methods of geophysical measurements are considered for this evaluation. The choice of GPR is informed by its non-invasiveness, simplicity and swiftness while the GCM was chosen as complimentary to the former. The method of estimating soil properties based on GPR data consists in searching for signal attributes, such as the amplitude of reflected radar waves, phase or envelope, which provide information on the continuity and/or discontinuity of reflections in the examined layer, geometries of spatial soil structures and their characteristics. Field measurements were carried out on a student's pilot field of WIPiE University of Agriculture, Krakow in three variants of soil compaction with tractor wheels. It should be emphasized that the compaction was carried out separately for each series of measurements. GCM and cone penetrating meter were also used for measurement at the same profile. Results of the three approaches of measurement have shown the possibility of identifying the zones of compaction and hence the degradation to the soil. The other methods results also show similarity in the delineation of the compacted zones. The comparison of methods used gave satisfactory correlations. Thus characterization of soil using these approaches is possible and the outcome information is very useful for professional such as soil scientist.
机译:在这项研究中,我们尝试使用综合地球物理方法通过压实度评估土壤的流变特性。该结果对于表征土壤尤其有用,特别是当其最佳利用倾向于农业时。这是至关重要的,因为土壤压实会导致土壤退化,因此仅依赖土壤生存的植物就会受到影响。本评估考虑了地球物理测量的探地雷达(GPR)和电导率仪(GCM)方法。 GPR的选择是基于其无创性,简单性和敏捷性,而GCM被选为前者的补充。基于GPR数据估算土壤性质的方法包括搜索信号属性,例如反射的雷达波幅度,相位或包络,这些属性提供有关被检查层中反射的连续性和/或不连续性,空间几何形状的信息。土壤结构及其特征。实地测量是在克拉科夫的WIPiE农业大学的一个学生试验场上进行的,用拖拉机轮进行土壤压实的三种变体。应该强调的是,压实是针对每个系列的测量分别进行的。 GCM和锥形渗透仪也用于相同轮廓的测量。三种测量方法的结果表明,有可能确定压实区域,从而确定土壤的退化程度。其他方法的结果在压实区域的轮廓上也显示出相似性。所用方法的比较给出了令人满意的相关性。因此,使用这些方法对土壤进行表征是可能的,并且结果信息对于土壤科学家等专业人士非常有用。

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