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首页> 外文期刊>Vadose zone journal VZJ >Evaluation of Standard Calibration Functions for Eight Electromagnetic Soil Moisture Sensors
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Evaluation of Standard Calibration Functions for Eight Electromagnetic Soil Moisture Sensors

机译:八个电磁土壤湿度传感器的标准校准功能评估

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摘要

An increasing number of electromagnetic (EM) sensors are deployed to measure volumetric soil water content (theta) for agricultural, ecological, and geotechnical applications. While impedance and capacitance sensors generally operate at frequencies between 20–300 MHz, time domain-reflectometry (TDR) and-transmissometry (TDT) function in the GHz range. In general, lower frequency sensors are less expensive but more sensitive to confounding effects of salinity, temperature, and soil textural variations. To simplify sensor application, factory-supplied calibrations are often provided for different porous media types such as mineral, organic, and saline soils, or soilless-substrates. The objective of the presented study was to evaluate the performanceof eight commercially available EM moisture sensing systems (TDR 100, CS616, Theta Probe, Hydra Probe, SM300, Wet2, 5TE, 10HS) in seven well-characterized and texturally varying soils using a standardized approach. The validity of factory supplied-calibration relationships was evaluated and the influence of soil properties on the EM responses for θ measurements was observed. Results indicate that the factory-supplied calibration relationships for groups of mineral and organic soils in general performedwell, but some inconsistences were identified and suggestions for improvement are discussed. Soil-specific calibrations from this study yielded accuracies of around 0.015 m~3m~(-3) for 10HS, SM300, and Theta Probe, while lower accuracies of about 0.025m~3 m~(-3) were found for TDR100, CS616, Wet2, 5TE, and the Hydra Probe. These results are based on mineral soils having a large variation in texture, electrical conductivities below 2 dS m~(-1), organic matter below 10%, and specific surface areas of less than 50 m2 g~(-1).
机译:越来越多的电磁(EM)传感器被部署用于测量农业,生态和岩土工程应用中土壤的体积水含量(theta)。虽然阻抗和电容传感器通常在20-300 MHz之间的频率下运行,但时域反射法(TDR)和透射法(TDT)在GHz范围内起作用。通常,较低频率的传感器较便宜,但对盐度,温度和土壤质地变化的混杂影响更为敏感。为了简化传感器的应用,通常为不同的多孔介质类型提供工厂提供的校准,例如矿物,有机和盐渍土壤,或无土基质。本研究的目的是使用标准方法评估八种市售的EM湿度感测系统(TDR 100,CS616,Theta Probe,Hydra Probe,SM300,Wet2、5TE,10HS)在七种特征鲜明且质地不同的土壤中的性能。方法。评估了工厂提供的校准关系的有效性,并观察了土壤性质对θ测量的EM响应的影响。结果表明,工厂提供的矿物和有机土壤组的校准关系总体上表现良好,但发现了一些矛盾之处,并讨论了改进建议。根据这项研究的土壤特定标定,对10HS,SM300和Theta Probe的精度约为0.015 m〜3m〜(-3),而对于TDR100,CS616的较低精度约为0.025m〜3 m〜(-3)。 ,Wet2、5TE和Hydra Probe。这些结果基于矿物土壤的质地变化大,电导率低于2 dS m〜(-1),有机物低于10%,比表面积低于50 m2 g〜(-1)。

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