Open Access

Evaluation of erosion rates in cadastral area Rovečné (Moravia) using GIS tools

European Countryside's Cover Image
European Countryside
Special Issue: Role of Water in the Rural Landscape. Special issue editors: Milada Šťastná, Andreas Panagopoulos, Zbyněk Kulhavý.

Cite

[1] Auzet, V., Poesen, J. & Valentin, C. (2004). Editorial. Soil surface characteristics: dynamics and impact on soil erosion. Earth Surface Processes and Landforms 29(9), 1063-1169. DOI: 10.1002/esp.1101.10.1002/esp.1101Search in Google Scholar

[2] Badalíková, B. & Hrubý, J. (2009). Využití netradičních meziplodin v protierozní ochraně půdy. Zemědělský výzkum Troubsko.Search in Google Scholar

[3] Barthès, B. & Roose, E. (2002). Aggregate stability as an indicator of soil susceptibility to runoff and erosion: validation at several levels. Catena 47(2), 133-149. DOI: 10.1016/S0341-8162(01)00180-1.10.1016/S0341-8162(01)00180-1Search in Google Scholar

[4] Bartsch, K. P., van Miegroet, H., Boettinger, J. & Dobrowolski, J. P. (2002). Using empirical erosion models and GIS to determine erosion risk at Camp Williams, Utah. Journal of Soil and Water Conservation 57(1), 29-36.Search in Google Scholar

[5] Dumbrovský, M. et al. (2008). Základní topografické a hydrologické nástroje a výpočet erozního smyvu v prostředí ArcGIS. VUT Brno.Search in Google Scholar

[6] Efe, R., Ekinci, D. & Curebel, I. (2000). Erosion analysis of Sahin watershed (NW of Turkey) using GIS based on RUSLE (3D) method. Journal of Applied Sciences 8(1), 49-58. DOI: 10.3923/jas.2008.49.58.10.3923/jas.2008.49.58Search in Google Scholar

[7] Feng, X., Wang, Y., Chen, L., Fu, B. & Bai, G. (2010). Modeling soil erosion and its response to land-use change in hilly catchments of the Chinese Loess Plateau. Geomorphology 118(3-4), 239-248. DOI: 10.1016/j.geomorph.2010.01.004.10.1016/j.geomorph.2010.01.004Search in Google Scholar

[8] Ferro, V. & Minacapilli, M. (1995.) Sediment delivery processes at basin scale. Hydrological Sciences Journal 40(6), 703-717. DOI: 10.1080/02626669509491460.10.1080/02626669509491460Search in Google Scholar

[9] Fistikoglu, O. & Harmancioglu, N. B. (2002). Integration of GIS with USLE in assessment of soil erosion. Water Resources Management 16(6), 447-467. DOI: 10.1023/A:1022282125760.10.1023/A:1022282125760Search in Google Scholar

[10] Geletič, J. et al. (2013). Úvod do ArcGIS 10. Olomouc: Palacký University.Search in Google Scholar

[11] Hernando, D. & Romana, M. G. (2015). Estimating the rainfall erosivity factor from monthly precipitation data in the Madrid Region (Spain). Journal of Hydrology and Hydromechanics 63(1), 55-62. DOI: 10.1515/johh-2015-0003.10.1515/johh-2015-0003Search in Google Scholar

[12] Janeček, M. et al. (2012). Ochrana zemědělské půdy před erozí - metodika. Czech Agricultural University in Prague.Search in Google Scholar

[13] Kuok, K. K. K., Mah, D. Y. S. & Chiu, P. C. (2013). Evaluation of C and P factors in Universal Soil Loss Equation on trapping sediment: case study of Santubong River. Journal of Water Resource and Protection 5(12), 1149-1154. DOI: 10.4236/jwarp.2013.512121.10.4236/jwarp.2013.512121Search in Google Scholar

[14] Lal, R. (2006). Encyclopedia of soil science. Tailor & Francis Group.Search in Google Scholar

[15] Longley, P. A., Goodchild, M. F., Maguire, D. J. & Rhind, D. W. (2011). Geographic Information Systems and Science. Hoboken: John Wiley and Sons.Search in Google Scholar

[16] Mašíček, T. (2010). Retenční potenciál povodí řeky Fryšávky [Ph.D. thesis]. Mendel University in Brno.Search in Google Scholar

[17] Mašíček, T., Toman, F & Jandák, J. (2013). Porovnání infiltrační schopnosti hnojené a nehnojené orné půdy. Úroda 61(12), 308-311.Search in Google Scholar

[18] Mašíček, T. & Ždímal, V. (2014). Inovace předmětu „Počítačové projektování“ - praktické využití GIS při řešení hydrologických analýz [Methodical worksheets]. Mendel University in Brno.Search in Google Scholar

[19] Morgan, R. P. C. (2009). Soil erosion and conservation. John Wiley & Sons.Search in Google Scholar

[20] Mukherjee, S., Joshi, P. K., Mukherjee, S., Ghosh, A., Garg, R. D. & Mukhopadhyay, A. (2014). Evaluation of vertical accuracy of open source Digital Elevation Model (DEM). International Journal of Applied Earth Observation and Geoinformation 21, 205-217. DOI: 10.1016/j.jag.2012.09.004.10.1016/j.jag.2012.09.004Search in Google Scholar

[21] Novák, P. et al. (1993). Synthetic soil map of the Czech Republic [1:200 000].Search in Google Scholar

[22] Official announcement of Ministry of Agriculture no. 327/1998 Col., which define the characteristics of the soil ecological units and the procedure for management and updating, in version no. 546/2002 Col.Search in Google Scholar

[23] Panagos, P., Borrelli, P. & Meusburger, K. (2015). A new European slope length and steepness factor (LS-Factor) for modeling soil erosion by water. Geosciences 5, 117-126. DOI: 10.3390/geosciences5020117.10.3390/geosciences5020117Search in Google Scholar

[24] Pivnička, K. (2002). Aplikovaná ekologie: dlouhodobá udržitelnost rybářské, zemědělské a lesnické produkce. Praha: Karolinum.Search in Google Scholar

[25] Podhrázská, J. & Dufková, J. (2005). Protierozní ochrana půdy. Mendelova zemědělská a lesnická univerzita v Brně.Search in Google Scholar

[26] Polách, J. et al. (1987). Protierozní ochrana zemědělských pozemků - typizační směrnice. Praha: Státní zemědělské nakladatelství.Search in Google Scholar

[27] Procházková, B. et al. (2011). Minimalizační technologie zpracování půdy a možnosti jejich využití při ochraně půdy a krajiny [Applied certified methodology]. Mendelova univerzita v Brně.Search in Google Scholar

[28] Renard, K. G., Foster, G. R., Weesies, G. A. & Porter, J. P. (1991). RUSLE: Revised Universal Soil Loss Equation. Journal of Soil and Water Conservation 46(1), 30-33.Search in Google Scholar

[29] Rodda, H. J. E., Demuth, S. & Shankar, U. (1999). The application of a GIS based decision support system to predict nitrate leaching to ground water in south Germany. Journal of Hydrological Sciences 44(2), 221-236.10.1080/02626669909492219Search in Google Scholar

[30] Schmidts, M. (2013). Esri ArcGIS Desktop Associate: Certification Study Guide. Redlands, Ca.: Esri Press.Search in Google Scholar

[31] Shabani, F., Kumar, L. & Esmaeili, A. (2014). Improvement to the prediction of the USLE K factor. Geomorphology 204(1), 229-234. DOI: 10.1016/j.geomorph.2013.08.008.10.1016/j.geomorph.2013.08.008Search in Google Scholar

[32] Tolasz, R. et al. (2007). Climate atlas of Czechia. Praha: Czech Hydrometeorological Institute.Search in Google Scholar

[33] van Oost, K. & Govers, G. (2000). USLE2D: Online manual. Katholieke Universiteit Leuven: URL: http://www.kuleuven.be/geography/frg/modelling/erosion/usle2dhome/.Search in Google Scholar

[34] Williams, J. R. (1975). Sediment-yield prediction with Universal Equation using runoff energy factor. In: Present and Prospective Technology for Predicting Sediment Yields and Sources, ARS-S-40 (pp. 244-252). Washington, DC.: US Department of Agriculture.Search in Google Scholar

[35] Wischmeier, W. H. & Smith, D. D. (1978). Predicting rainfall erosion losses. A guide to conservation planning. Washington, DC.: US Department of Agriculture.Search in Google Scholar

[36] Zheng, F. (2006). Effect of vegetation changes on soil erosion on the Loess Plateau. Pedosphere 16(4), 420-427. DOI:10.1016/S1002-0160(06)60071-4.10.1016/S1002-0160(06)60071-4Search in Google Scholar

[37] Zheng, M., Liao, Y. & Jijun, H. (2014). Sediment delivery ratio of single flood events and the influencing factors in a headwater basin of the Chinese Loess Plateau. PLoS One 9(11). DOI: 10.1371/journal.pone.0112594. 10.1371/journal.pone.0112594422929725389752Search in Google Scholar

eISSN:
1803-8417
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Ecology, other