首页> 外文期刊>European Journal of Soil Science >A profiling TDR probe for water content and electrical conductivity measurements of soils.
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A profiling TDR probe for water content and electrical conductivity measurements of soils.

机译:TDR型探头,用于测量土壤的水含量和电导率。

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Measurements of water content profiles are of great interest in hydrology and soil science. Time domain reflectometry (TDR) is a well-established method for water content measurements; however, most TDR probe designs are suitable for measurements in only a small soil volume. In this article, a 1-m long TDR profiling probe with five measurement sections is described. Unlike most other previous profiling probes, our probe allows for both dielectric permittivity ( epsilon ) and electrical conductivity ( sigma a) measurements. The accuracy of the epsilon and sigma a measurements was excellent; the precision of the measurements was, however, significantly poorer than with a 0.20-m long standard three rod TDR probe. The new probe was installed in a field and successfully measured water content profiles during the growing season of 2009. During an infiltration experiment it was shown that because of its geometry, the profiling probe over-estimated the wetting-front velocity. At a 0.10-m depth, the over-estimation was almost 30%. The over-estimate will be less significant at greater depths.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2389.2010.01306.x
机译:水分剖面的测量在水文学和土壤科学中非常重要。时域反射仪(TDR)是一种行之有效的水分含量测量方法。但是,大多数TDR探头设计仅适用于土壤量很小的情况。在本文中,介绍了一个1米长的TDR分析探头,其中包含五个测量部分。与以前的大多数其他轮廓分析探头不同,我们的探头可同时测量介电常数(ε)和电导率(sigma a )。 epsilon和sigma a 的测量精度非常好;然而,测量精度明显比使用0.20米长的标准三棒TDR探头差。新型探头安装在现场,并成功测量了2009年生长季节的水分含量。在渗透实验中,由于其几何形状,轮廓探头高估了湿润前沿速度。在0.10米的深度,高估了将近30%。在更高的深度处,高估的重要性将降低.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2389.2010.01306.x

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