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  • Volume 48, Issue 3

A smartphone camera for the structure from motion reconstruction for measuring soil surface variations and soil loss due to erosion

A. Vinci, F. Todisco, R. Brigante, F. Mannocchi, F. Radicioni
Published June 2017, 48 (3) 673-685; DOI: 10.2166/nh.2017.075
A. Vinci
Department of Agricultural, Food and Environmental Sciences, University of Perugia, Borgo XX Giugno 74, 06121 Perugia, Italy E-mail: alessandra.vinci@unipg.it
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F. Todisco
Department of Agricultural, Food and Environmental Sciences, University of Perugia, Borgo XX Giugno 74, 06121 Perugia, Italy E-mail: alessandra.vinci@unipg.it
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R. Brigante
Department of Engineering, University of Perugia, Via G. Duranti 93, 06125 Perugia, Italy
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F. Mannocchi
Department of Agricultural, Food and Environmental Sciences, University of Perugia, Borgo XX Giugno 74, 06121 Perugia, Italy E-mail: alessandra.vinci@unipg.it
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F. Radicioni
Department of Engineering, University of Perugia, Via G. Duranti 93, 06125 Perugia, Italy
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Abstract

The suitability of a smartphone camera for the structure from motion (SfM) reconstruction for monitoring variations in soil surface characteristics and soil loss originated by a low intensity erosive event was evaluated. Terrestrial laser scanning (TLS) was used to validate the SfM model. Two surveys of the soil surface, one before and one after the rainfall event, were carried out for SfM and TLS. The point clouds obtained by the SfM were compared to the TLS point clouds (used as reference). From the point clouds, digital elevation models (DEMs) (0.01 m × 0.01 m) were obtained. The differences of the DEMs (DoDs) obtained from the two surveys for SfM and TLS were compared. To assess the uncertainty of the DEMs, from the DoDs the minimum level of detection was derived. The soil loss was evaluated from DoDs (for SfM and TLS, respectively) considering negative values as erosion and positive values as deposition. The SfM appears appropriate and sensitive for detecting small soil surface variations induced by low erosive events. The SfM estimated correctly the measured soil loss, while TLS underestimated 26%. Further studies could be carried out to consolidate these first results.

  • DEM
  • high resolution topography
  • interrill erosion
  • SfM photogrammetry
  • soil loss
  • TLS
  • First received 1 March 2016.
  • Accepted in revised form 16 January 2017.
  • © IWA Publishing 2017
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Hydrology Research: 49 (2)
  Volume 48, Issue 3

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A smartphone camera for the structure from motion reconstruction for measuring soil surface variations and soil loss due to erosion
A. Vinci, F. Todisco, R. Brigante, F. Mannocchi, F. Radicioni
Hydrology Research Jun 2017, 48 (3) 673-685; DOI: 10.2166/nh.2017.075
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A smartphone camera for the structure from motion reconstruction for measuring soil surface variations and soil loss due to erosion
A. Vinci, F. Todisco, R. Brigante, F. Mannocchi, F. Radicioni
Hydrology Research Jun 2017, 48 (3) 673-685; DOI: 10.2166/nh.2017.075

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Keywords

DEM
high resolution topography
interrill erosion
SfM photogrammetry
soil loss
TLS
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