Laboratory and field assessment of the capacitance sensors Decagon 10HS and 5TE for estimating the water content of irrigated soils
Autor: | Delfina Martínez, Fernando Visconti, Mª José Molina, José Miguel de Paz |
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Přispěvatelé: | Ministerio de Ciencia e Innovación (España), Generalitat Valenciana |
Rok vydání: | 2014 |
Předmět: |
Soil salinity
SE Spain Model calibration Soil Science Field validation Soil science Dielectric permittivity measurements Dielectric Loam Irrigated clayey soils Soil water Calibration Electrical conductivity Environmental science Decagon Capacitance probe Agronomy and Crop Science Water content Earth-Surface Processes Water Science and Technology |
Zdroj: | Impreso ReDivia. Repositorio Digital del Instituto Valenciano de Investigaciones Agrarias instname Digital.CSIC. Repositorio Institucional del CSIC |
ISSN: | 0378-3774 |
Popis: | Capacitance sensors such as Decagon 10HS and 5TE are increasingly used for soil water content (θ) estimation. However, their reliability and limitations in clayey soils irrigated with saline waters have not been completely characterized under field conditions. Four levels of soil water content were combined with six levels of soil salinity in twenty-four pots to assess the performance of both sensors in a wide range of soil salinities. A simplified power-law dielectric mixing model was calibrated in the laboratory to estimate the θ of a clay loam soil from the measurements of apparent dielectric permittivity (e{open}b) performed with both sensors. The calibrated equation was subsequently validated for the estimation of θ at two depths in six irrigated salt-threatened soils with clayey textures in SE Spain. The 10HS sensor provides higher estimations of e{open}b than the 5TE. Besides, the 5TE sensor was more sensitive to soil salinity. Consequently, a different calibration was carried out for each sensor. When all the soil salinity treatments were included in the calibrations, the results were poor. However, for soil apparent electrical conductivities below 1.7dSm-1 the 5TE sensor could be calibrated with low prediction errors, and with the calibration parameters b0 and b1 very close to their characteristic values in clayey and mineral soils. In field testing, the 5TE sensors calibrated with the obtained equation provided average correct estimations with an error of ±0.05m3m-3. On the contrary, the 10HS sensor overestimated the soil water content by 0.07m3m-3 on average. The proposed simple calibration equation for the 5TE sensor can be reliably used under field conditions to estimate θ of irrigated clayey soils up to an apparent electrical conductivity of 1.7dSm-1. © 2013 Elsevier B.V. The funding for this work was provided by the Spanish Ministerio de Ciencia e Innovación through projects CGL2009-14592-C02-01 and CGL2009-14592-C02-02, and program “Juan de la Cierva” (F. Visconti) and scholarship BES-2010-036515 (D. Martínez), and Generalitat Valenciana through program Val i+d (F. Visconti). We thank the two anonymous reviewers and joint editor-in-chief for their constructive comments that improved the article. |
Databáze: | OpenAIRE |
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