...
首页> 外文期刊>Soil Science Society of America Journal >Measurement of Soil Water Content with a 50-MHz Soil Dielectric Sensor
【24h】

Measurement of Soil Water Content with a 50-MHz Soil Dielectric Sensor

机译:用50 MHz土壤电介质传感器测量土壤含水量

获取原文
获取原文并翻译 | 示例

摘要

The Hydra Probe1 is a relatively inexpensive and widely used soil water content (, m3 m–3) sensor. It measures both the real (r) and imaginary (i) components of the complex soil dielectric constant at 50 MHz. Our objectives were to: (i) determine the accuracy and precision of Hydra Probe dielectric measurements, (ii) establish an electrical conductivity limit for Hydra Probe measurements, (iii) document effects of soil type and temperature, and (iv) relate these results to much more thoroughly studied relationships established for time domain reflectometry (TDR). We evaluated Hydra Probe r measurement precision and accuracy in air, ethanol, butanol, and water. Electrical conductivity effects were established in a series of aqueous KCl solutions. Effects of soil type on calibration were evaluated with four soils. Temperature sensitivity was tested in air, oven-dried, and nearly saturated soil. Each test was performed with three sensors. We found that, in fluids, the sensors were accurate (r within 0.5), precise (coefficient of variation [CV] 0.142 S m–1 (0.01 M). There was a strong correlation between and r for all soils tested but the –r relationship varied with soil. Deviations of measured –r from the Topp equation increased in magnitude with i, which may be the key to more general calibrations. Temperature effects on r were negligible in oven dry soils and different for each soil when nearly saturated. The largest temperature effect relative to 25°C was ±0.03 m3 m–3. In general, it appears that differences between Hydra Probe and TDR measurements are related to differences in soil dielectric properties at the measurement frequencies of the two instruments.
机译:Hydra Probe 1 是一种相对便宜且广泛使用的 土壤水分(m 3 m –3 )传感器。它在50处测量复数土壤 介电常数的 实部( r )和虚部( i )分量兆赫我们的目标是:(i)确定Hydra Probe电介质测量的准确性和精密度, (ii)建立Hydra Probe 测量,(iii)记录土壤类型和温度的影响, ,以及(iv)将这些结果与为时域反射法(TDR)建立的更深入研究的 关系相关。 我们评估了Hydra Probe r 在空气,乙醇,丁醇和水中的测量精度和准确性。在一系列氯化钾水溶液中建立了电导率效应。用四种土壤评估了土壤类型对标定的影响。在空气,烤箱干燥, 和接近饱和的土壤中测试温度敏感性。每个测试均使用三个 传感器进行。我们发现,在流体中,传感器是准确的 r 在0.5之内),精确的(变异系数[CV] 0.142 S m –1 (0.01 M)。对于 除– r 以外的所有土壤, r r 之间具有很强的相关性。关系随土壤而变化。 Topp方程中测量的– r 的偏差随着 i 的增加而增加了 的幅度,这可能与 r 的温度影响在干燥的土壤中可以忽略不计,而 在每种土壤接近饱和时都不同。相对于25°C的温度 效果为±0.03 m 3 m –3 。在 常规中,似乎Hydra Probe和 TDR测量之间的差异与两种仪器的测量频率下土壤电介质 性质的差异有关。

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