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THE COMBINATION OF GEODETIC AND CLOSE-RANGE PHOTOGRAMMETRY TECHNOLOGIES IN TERRAIN MAPPING FOR LAND EROSION PROTECTION

Kliment, Marcel, Kocica, Jakub, Kliment, Tomas, Bulikova, Michaela, Halva, Jozef

First published: 2015https://doi.org/10.5593/sgem2015/b21/s10.148View metrics

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Title
THE COMBINATION OF GEODETIC AND CLOSE-RANGE PHOTOGRAMMETRY TECHNOLOGIES IN TERRAIN MAPPING FOR LAND EROSION PROTECTION
Authors
Kliment, Marcel, Kocica, Jakub, Kliment, Tomas, Bulikova, Michaela, Halva, Jozef
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, INFORMATICS, GEOINFORMATICS AND REMOTE SENSING
Publisher
Stef92 Technology
Year
2015
Pages
1159-1166
ISSN
1314-2704
ISBN
978-619-7105-34-6
Language
en
Publication type
Conference Paper
References26
  1. ABER, J. et al. Small-Format Aerial Photography: Principles, techniques, and geoscience applications. Elsevier. 2010. p 268

  2. COLLECTIVE OF AUTHORS. Atlas krajiny SR. Ministry of Environment. Bratislava. 2002. p 124-125 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015

  3. DE SANTISTEBAN. et al. Assessing soil erosion rates in cultivated areas of Navarre (Spain). In: Earth Surface Processes and Landforms Vol. 4. 2006. p 487-

  4. FRANKL, A. et al. Detailed recording of gully morphology in 3D through image- based modelling. Catena Vol. 127. 2015. p. 92-101

  5. FRAŠTIA, M . Laserové versus optické skenovanie skalných masívov . In: Mineralia Slovaca Vol. 44. 2012. p 177-184

  6. GESCH, K. R. et al. Quantifying Uncertainty of Measuring Gully Morphological Evolution With Close-Range Digital Photogrammetry. In: Soil Science Society of America Journal Vol. 79. 2015. p 650-659

  7. HAIOU SHEN. et al. An experimental study of rill erosion and morphology. In: Geomorphology Vol. 231. 2015. p 193-201

  8. KLUIBENSCHÄDL. et al. Assessment of gully erosion by linking photogrammetric methods and field measurements. Geophysical Research Abstracts. Vienna. Vol. 15. 2013

  9. MARZOLFF, I. POESEN, J. The potential of 3D gully monitoring with GIS using high-resolution aerial photography and a digital photogrammetry system. In: Geomorphology Vol. 111. 2009. p 48-60

  10. STÖCKER, C. et al. Without gaps – a case study of 3D photo-reconstruction of one gully headcut by combined utilisation of UAV and close-range photogrammetry. Geophysical Research Abstracts. Vienna. Vol. 17. 2015

  11. VANDAELE, K. et al. Geomorphic threshold conditions for ephemeral gully incision. In: Geomorphology Vol. 16. 1996. p 161-173

  12. LACKÓOVÁ, L. – KONDRLOVÁ, E. – STREĎANSKÝ, J. – URBAN, T. – STREĎANSKÁ, A., Comparison of rill erosion modelling according USLE equation and Mitašová methodology and parameters in GIS using various crop management. In: Acta scientiarum Polonorum, vol. 12, No. 3, 2013, p. 11-19

  13. URBAN, T. – LACKÓOVÁ, L. – HALÁSZOVÁ, K. – STREĎANSKÝ, J., Wind erosion in the agricultural landscape : the wind erosion equation used in GIS , 1st ed. Kraków, Poland, 2013, p. 109 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  14. ABER, J. et al. Small-Format Aerial Photography: Principles, techniques, and geoscience applications. Elsevier. 2010. p 268

  15. COLLECTIVE OF AUTHORS. Atlas krajiny SR. Ministry of Environment. Bratislava. 2002. p 124-125 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015

  16. DE SANTISTEBAN. et al. Assessing soil erosion rates in cultivated areas of Navarre (Spain). In: Earth Surface Processes and Landforms Vol. 4. 2006. p 487-

  17. FRANKL, A. et al. Detailed recording of gully morphology in 3D through image- based modelling. Catena Vol. 127. 2015. p. 92-101

  18. FRAŠTIA, M . Laserové versus optické skenovanie skalných masívov . In: Mineralia Slovaca Vol. 44. 2012. p 177-184

  19. GESCH, K. R. et al. Quantifying Uncertainty of Measuring Gully Morphological Evolution With Close-Range Digital Photogrammetry. In: Soil Science Society of America Journal Vol. 79. 2015. p 650-659

  20. HAIOU SHEN. et al. An experimental study of rill erosion and morphology. In: Geomorphology Vol. 231. 2015. p 193-201

  21. KLUIBENSCHÄDL. et al. Assessment of gully erosion by linking photogrammetric methods and field measurements. Geophysical Research Abstracts. Vienna. Vol. 15. 2013

  22. MARZOLFF, I. POESEN, J. The potential of 3D gully monitoring with GIS using high-resolution aerial photography and a digital photogrammetry system. In: Geomorphology Vol. 111. 2009. p 48-60

  23. STÖCKER, C. et al. Without gaps – a case study of 3D photo-reconstruction of one gully headcut by combined utilisation of UAV and close-range photogrammetry. Geophysical Research Abstracts. Vienna. Vol. 17. 2015

  24. VANDAELE, K. et al. Geomorphic threshold conditions for ephemeral gully incision. In: Geomorphology Vol. 16. 1996. p 161-173

  25. LACKÓOVÁ, L. – KONDRLOVÁ, E. – STREĎANSKÝ, J. – URBAN, T. – STREĎANSKÁ, A., Comparison of rill erosion modelling according USLE equation and Mitašová methodology and parameters in GIS using various crop management. In: Acta scientiarum Polonorum, vol. 12, No. 3, 2013, p. 11-19

  26. URBAN, T. – LACKÓOVÁ, L. – HALÁSZOVÁ, K. – STREĎANSKÝ, J., Wind erosion in the agricultural landscape : the wind erosion equation used in GIS , 1st ed. Kraków, Poland, 2013, p. 109 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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