首页> 外文期刊>Geoderma: An International Journal of Soil Science >Improving the reliability of soil EC-mapping: Robust apparent electrical conductivity (rECa) estimation in ground-based frequency domain electromagnetics
【24h】

Improving the reliability of soil EC-mapping: Robust apparent electrical conductivity (rECa) estimation in ground-based frequency domain electromagnetics

机译:改善土壤EC映射的可靠性:基于地基频域电磁的强大表观电导率(RECA)估计

获取原文
获取原文并翻译 | 示例
           

摘要

The use of frequency domain electromagnetic (FDEM) instrumentation in ground-based near-surface applications is continually expanding. In soil studies, FDEM is mainly deployed to inform on soil properties such as salinity, texture, moisture or compaction by evaluating the low induction number (LIN) apparent electrical conductivity (ECa). However, advanced FDEM applications face terrains and conditions in which these LIN approximations are no longer valid. Under such conditions, the aforementioned instrumentation output systematically underestimates ECa values; making semi-qualitative data analysis, representation and practical interpretation impossible. For this reason, methods have to be developed to relate the complex FDEM responses to a reliable ECa, beyond the limitations of the LIN approximation. In this work, we present a quadrature-phase algorithm (i.e. excluding the in-phase signal from the estimation) to obtain a robust apparent electrical conductivity at both low and high induction numbers. In addition, the algorithm classifies the ECa estimations as either robust or non-robust based on instrument noise, desired precision of the ECa estimation and the effect of subsurface magnetic variations. The algorithm accounts for electrical conductivity, instrument elevation, coil geometry, operating frequency, subsurface magnetic variation and random errors. The presented procedure, which was tested on synthetic and experimental data, consists a robust and straightforward approach to increase reliability of ECa derived soil mapping.
机译:在基于地基近表面应用中使用频域电磁(FDEM)仪器的使用是不断扩展的。在土壤研究中,主要部署FDEM以通过评估低诱导数(LIN)表观电导率(ECA)来通知土壤性质,如盐度,纹理,水分或压实。但是,高级FDEM应用面部地形和条件,其中这些LIN近似不再有效。在这种情况下,上述仪器输出系统地低估了ECA值;制定半定性数据分析,代表和实际解释是不可能的。因此,必须开发方法以将复杂的FDEM响应与超出LIN近似的局限性相关联。在这项工作中,我们提出了一种正交相算法(即,从估计中排除同相信号),以在低诱导数字处获得稳健的表观电导率。此外,该算法基于仪器噪声,ECA估计的所需精度以及地下磁变化的效果,将ECA估计分类为坚固或非稳健。该算法考虑了导电性,仪器升高,线圈几何形状,工作频率,地下磁场和随机误差。在合成和实验数据上测试的呈现程序包括强大而直接的方法,以提高ECA衍生土壤映射的可靠性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号