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Comparing unfrozen water content measurements of frozen soil using recently developed commercial sensors

机译:使用最新开发的商用传感器比较冷冻土壤的未冻结水分含量

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Many soil moisture probes that use the bulk electromagnetic properties of the soil have been introduced to the market over the last decade. These electric devices have been developed by the semiconductor industry and have improved dramatically both in terms of size and price. In this study, we test and calibrate five different soil moisture sensors for measuring the unfrozen water content of frozen materials under laboratory and field conditions. The soil volume to which each probe is sensitive is one of the important parameters influencing moisture measurement, particularly in a heterogeneous medium such as ice rich frozen soils. Each sensor has a unique response to changing temperature and type of soil, which we characterize using porosity. All of the probes examined here require unique exponential calibration equations to obtain unfrozen water content from probe output. We provide equations for clay (bentonite) and Fairbanks silt. Field application of empirical equations for two different types of sensors demonstrates the change in values obtained and the convergence of measured water content values using calibrations specific for frozen soils.
机译:在过去的十年中,许多利用土壤的大部分电磁特性的土壤湿度探头已经投放市场。这些电子设备已经由半导体工业开发,并且在尺寸和价格方面都得到了显着改善。在这项研究中,我们测试和校准了五个不同的土壤湿度传感器,以测量实验室和野外条件下冷冻物料的未冷冻水分含量。每个探头都敏感的土壤体积是影响水分测量的重要参数之一,尤其是在非均质介质(例如富含冰的冻土)中。每个传感器对变化的温度和土壤类型都有独特的响应,我们使用孔隙度来表征。此处检查的所有探头都需要唯一的指数校准方程式,才能从探头输出中获得未冻结的水分。我们提供了粘土(膨润土)和费尔班克斯粉砂的方程。两种不同类型传感器的经验方程式的现场应用展示了所获得的值的变化以及使用特定于冻土的校准得出的含水率测量值的收敛性。

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