Application of spatial time domain reflectometry measurements in heterogeneous, rocky substrates

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Abstract

Measurement of soil moisture across depths using sensors is currently limited to point measurements or remote sensing technologies. Point measurements have limitations on spatial resolution, while the latter, although covering large areas may not represent real-time hydrologic processes, especially near the surface. The objective of the study was to determine the efficacy of elongated soil moisture probes - spatial time domain reflectometry (STDR) - and to describe transient soil moisture dynamics of unconsolidated mine waste rock materials. The probes were calibrated under controlled conditions in the glasshouse. Transient soil moisture content was measured using the gravimetric method and STDR. Volumetric soil moisture content derived from weighing was compared with values generated from a numerical model simulating the drying process. A calibration function was generated and applied to STDR field data sets. The use of elongated probes effectively assists in the real-time determination of the spatial distribution of soil moisture. It also allows hydrologic processes to be uncovered in the unsaturated zone, especially for water balance calculations that are commonly based on point measurements. The elongated soil moisture probes can potentially describe transient substrate processes and delineate heterogeneity in terms of the pore size distribution in a seasonally wet but otherwise arid environment.

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Gonzales, C., Scheuermann, A., Arnold, S., & Baumgartl, T. (2016). Application of spatial time domain reflectometry measurements in heterogeneous, rocky substrates. Journal of Geophysics and Engineering, 13(5), 758–767. https://doi.org/10.1088/1742-2132/13/5/758

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