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Evaluation of selected factors that may influence the application of electromagnetic induction technology to soil science investigations in Iowa.

机译:评估可能影响电磁感应技术在爱荷华州土壤科学研究中应用的因素。

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摘要

Many who engage in soil survey have long desired discovery of a remote sensing technique that differentiates individual soil series. As research in precision agriculture has begun, many other agricultural scientists have also begun evaluating remote sensing tools for soil mapping purposes. Soil electrical conductivity (EC), as measured by instruments including the Geonics ® EM-38, has shown promise as a soil survey tool. Most of the work done along these fines to date has involved comparing soil EC patterns to Order 1 or 2 soil surveys. It is important that we understand how certain field conditions that might be encountered during the course of a typical soil survey affect soil EC readings. Therefore, the purpose of this dissertation was to identify field conditions that might affect soil EC readings obtained with the EM-38 and then conduct investigations to determine what, if any, affect those field conditions had. The relationships between soil moisture and soil EC were investigated in the field, and between soil moisture, temperature, carbonate content, and soil EC were investigated in the laboratory. The possible influence of diurnal temperature changes and changes in bulk density in the upper few cm of the soil on EC readings obtained with the EM-38 was studied, as was the possible influence of crop residue cover on soil EC readings. Results show that soil water content is often highly correlated to soil EC, and the influence of soil water content is at least two orders of magnitude greater than the influence of soil temperature or carbonate content in determining soil EC. Diurnal temperature fluctuations and crop residues covering the soil surface did not affect soil EC values, but changes in bulk density did. Therefore, it was concluded that knowledge of soil moisture conditions might allow a soil surveyor to anticipate the expected range of soil EC values for a given soil series on a given day. No compensation needs to be made for diurnal temperature changes in the soil or for crop residue cover. However, more work is needed on how bulk density affects soil EC readings obtained with the EM-38.
机译:长期从事土壤调查的许多人都希望找到一种能够区分不同土壤系列的遥感技术。随着精密农业研究的开始,许多其他农业科学家也开始评估用于土壤测绘目的的遥感工具。用包括Geonics ® EM-38在内的仪器测量的土壤电导率(EC)已显示出作为土壤测量工具的希望。迄今为止,沿这些罚款进行的大多数工作都涉及将土壤EC模式与1或2级土壤调查进行比较。重要的是,我们了解典型的土壤调查过程中可能遇到的某些田间条件如何影响土壤EC读数。因此,本论文的目的是确定可能会影响使用EM-38获得的土壤EC读数的田间条件,然后进行调查以确定哪些因素会影响这些田间条件。在田间研究了土壤水分与土壤EC之间的关系,并在实验室研究了土壤水分,温度,碳酸盐含量和土壤EC之间的关系。研究了每日温度变化和土壤上部几厘米的容重变化对使用EM-38获得的EC读数的可能影响,以及农作物残茬覆盖对土壤EC读数的可能影响。结果表明,土壤含水量通常与土壤EC高度相关,在确定土壤EC时,土壤水分的影响至少要比土壤温度或碳酸盐含量的影响大两个数量级。昼夜温度波动和农作物残留物覆盖土壤表面不会影响土壤EC值,但容重变化会影响土壤EC值。因此,可以得出这样的结论:了解土壤湿度条件可以使土壤调查员在给定的一天中预测给定土壤系列的土壤EC值的预期范围。无需为土壤中的昼夜温度变化或作物残渣覆盖量进行补偿。但是,还需要做更多的工作来研究体积密度如何影响通过EM-38获得的土壤EC读数。

著录项

  • 作者

    Brevik, Eric Charles.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Soil Science.; Geophysics.; Remote Sensing.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;地球物理学;遥感技术;
  • 关键词

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