Estimating soil moisture and soil thermal and hydraulic properties by assimilating soil temperatures using a particle batch smoother

Journal Article (2016)
Author(s)

J. Dong (TU Delft - Water Resources)

S. C. Steele-Dunne (TU Delft - Water Resources)

Tyson E. Ochsner

Nick C. Van De Giesen (TU Delft - Water Resources)

Research Group
Water Resources
DOI related publication
https://doi.org/10.1016/j.advwatres.2016.03.008
More Info
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Publication Year
2016
Language
English
Research Group
Water Resources
Volume number
91
Pages (from-to)
104-116

Abstract

This study investigates the potential of estimating the soil moisture profile and the soil thermal and hydraulic properties by assimilating soil temperature at shallow depths using a particle batch smoother (PBS) using synthetic tests. Soil hydraulic properties influence the redistribution of soil moisture within the soil profile. Soil moisture, in turn, influences the soil thermal properties and surface energy balance through evaporation, and hence the soil heat transfer. Synthetic experiments were used to test the hypothesis that assimilating soil temperature observations could lead to improved estimates of soil hydraulic properties. We also compared different data assimilation strategies to investigate the added value of jointly estimating soil thermal and hydraulic properties in soil moisture profile estimation. Results show that both soil thermal and hydraulic properties can be estimated using shallow soil temperatures. Jointly updating soil hydraulic properties and soil states yields robust and accurate soil moisture estimates. Further improvement is observed when soil thermal properties were also estimated together with the soil hydraulic properties and soil states. Finally, we show that the inclusion of a tuning factor to prevent rapid fluctuations of parameter estimation, yields improved soil moisture, temperature, and thermal and hydraulic properties.

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