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- W2989806162 abstract "We designed an open source device (EVAP-FOR) to monitor soil profile (soil water content and soil temperature at 3 depths) and air conditions (temperature, relative humidity) in terrestrial ecosystem. Assessesment of soil water content is done using low-cost capacitance probe. We first converted the measured voltage unit for each capacitance probe into relative permittivity using 10 standard solutions and developed a physical based model that used relative permittivity, bulk density and particles density to assess soil water content in soil cores. To test the robustness of our design and model, we built 12 data loggers and used 36 probes to assess water content in 36 soil cores that representing 12 soil texture (clayey to sandy). Preliminary results showed that capacitance probe were able to explain 86% of the total variance of soil water content in an independent dataset of 12 soil cores. The analysis of the residuals extracted from the calibration curves developed using standard solutions showed that there was no effect of the device (0% of the variance) on the measurement, but a small effect of the capacitance probe was detected (15%). This effect can be alleviated by the use of calibration curves that are specific to each probe. The low-cost of EVAP-FOR data logger provides the opportunity to develop local high spatial density networks of monitoring stations. Such networks will be useful to understand the spatio-temporal dynamics of terrestrial ecosystem productivity and resilience, for example, at watershed scale." @default.
- W2989806162 created "2019-12-05" @default.
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- W2989806162 date "2019-10-01" @default.
- W2989806162 modified "2023-09-26" @default.
- W2989806162 title "An open-source device to monitor pedoclimatic conditions in terrestrial ecosystems" @default.
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- W2989806162 doi "https://doi.org/10.1109/metroagrifor.2019.8909264" @default.
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