...
首页> 外文期刊>Soil Science Society of America Journal >Calibrating Access-tube Time Domain Reflectometry Soil Water Measurements in Deep Heterogeneous Soils
【24h】

Calibrating Access-tube Time Domain Reflectometry Soil Water Measurements in Deep Heterogeneous Soils

机译:深层非均质土壤中校准访问管时域反射法的土壤水分测量

获取原文
获取原文并翻译 | 示例

摘要

Hydrologic characterization of the vadose zone requires accurate measurements of soil water in a variety of soil textures. Time domain reflectometry (TDR) instruments are commonly used to obtain soil moisture. Although there are advantages to using TDR, certain types of instruments pose challenges, including proper installation and calibration, which must be overcome. The principal objective of this study was to develop a new method for obtaining and calibrating access-tube TDR measurements in deep heterogeneous soils. Using two regression techniques, physical and chemical property-based calibrations were developed to predict soil water and explain large differences between TDR and gravimetric soil water values. Differences between TDR soil water and gravimetric soil water were almost entirely controlled by physical and chemical soil properties; indicating that our access-tube TDR probe likely produced an accurate measurement of 'free' but not bound water content. The bound fraction is controlled by physical and chemical properties and is a nearly static parameter at the depths and time scales considered in this study. Changes in TDR measurements after the initial calibration represent changes in the 'free' water content. Our calibration equations used easily obtained parameters to predict accurate soil water values in a wide range of soil textures. Approximately 95% of the soil water values predicted using our calibration equations had residuals of less than pl 10% soil water. We also developed a cost-effective method for installing access tubes which minimized problems related to air gaps and soil structure disturbances in deep soil profiles.
机译:渗流带的水文特征要求在各种土壤质地中准确测量土壤水分。时域反射仪(TDR)仪器通常用于获取土壤水分。尽管使用TDR有很多优点,但是某些类型的仪器会带来挑战,包括必须正确安装和校准。这项研究的主要目的是开发一种获取和校准深层异质土壤中接入管TDR测量值的新方法。使用两种回归技术,开发了基于物理和化学性质的标定方法,以预测土壤水分并解释TDR和重量土壤水分值之间的巨大差异。 TDR土壤水和重量土壤水之间的差异几乎完全由物理和化学土壤特性控制。表示我们的接入管TDR探针可能对“游离”但未结合水含量进行了准确的测量。结合分数受物理和化学性质控制,在本研究中考虑的深度和时间尺度上是几乎静态的参数。初始校准后TDR测量值的变化表示“自由”水含量的变化。我们的校准方程使用容易获得的参数来预测各种土壤质地中的准确土壤水分值。使用我们的校准方程式预测的大约95%的土壤水分值的残留量少于10%的土壤水分。我们还开发了一种经济高效的安装检修管的方法,该方法可最大程度减少与深层土壤剖面中的气隙和土壤结构扰动有关的问题。

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