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SOIL EROSION MODEL SMODERP - 1D AND 2D MODELLING

., Petr Kavka, Zajicek, Bc. Jan

First published: 2013-06-20https://doi.org/10.5593/sgem2013/bb2.v1/s11.037View metrics

Publication Impact Profile

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  • Citations
  • CrossRef - Citation Indexes: 3
  • Scopus - Citation Indexes: 6
  • Captures
  • Mendeley - Readers: 20

Publication details

Title
SOIL EROSION MODEL SMODERP - 1D AND 2D MODELLING
Authors
., Petr Kavka, Zajicek, Bc. Jan
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 13th SGEM GeoConference on INFORMATICS, GEOINFORMATICS AND REMOTE SENSING
Publisher
Stef92 Technology
Year
2013
Pages
895 - 902 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References32
  1. Van Camp, L., Bujarrabal, B., Gentile, A.-R., Jones, R.J.A., Montanarella, L., Olazabal, Selvaradjou C., S.-K., 2004. Reports of the Technical Working Groups established under the Thematic Strategy for Soil Protection. EUR 21319 EN/2. Office for Official Publications of the European Communities, Luxembourg. 872 pp.

  2. Wischmeier, W. H. − Smith, D. D. Predicting Rainfall Erosion Losses − A Guide to Conservation Planning, Agr. Handbook No.537,US Dept.of Agriculture, Washington, 1978.

  3. Renard, K.G., Foster, G.R., Weesies, G.A., Porter, J.P., 1991, RUSLE: revised universal soil loss equation, Journal of Soil & Water Conservation, 46 (1), pp. 30-33.

  4. Singh, P. V. − Surendra, K. M. Soil Conservation Sevice Curve Number (SCS - CN) Methodology, Kluwer Aca-demic Reserved, 2003, ISBN 1−4020−1132−6

  5. www.ars.usda.gov, 2010.WatershedPhysicalProcessesResearchUnit ; WEPP; cited 5.1.2013; URL: http://www.ars.usda.gov/Research/docs.htm docid=10621

  6. www.ars.usda.gov, 2010.Southwest Watershed Research; KINEROS2, cited 5. 1. 2013; http://www.tucson.ars.ag.gov/kineros/

  7. Schmidt, J. − Werner, M. − Michael, A., 1996, EROSION 2D/3D − Ein Computermodell zur Simulation der Bo-denerosion durch Wasser. Sächsische Landesanstalt für Landwirtschft, Sächsische Landesamt für Umwelt und Geologie. Freiberg,. (in Deutche)

  8. Kavka P, 2011, Calibration and Validation of Model SMODERP, CTU Prague, Prague, PhD. Thesis, in Czech.

  9. Horton RE. 1933, The role of infiltration in the hydrologic cycle. Transactions, American Geophysical Union 14: 446– 460.

  10. Dunne, T. & R. D. Black, 1970 Partial area contributions to storm runoff in a small New-England watershed. Water Resources Research, 6, 1296-&.

  11. Beven, K. (1981) Kinematic Subsurface Stormflow. Water Resources Research, 17, 1419-1424.

  12. Chow, V. T., Maidment, D. R., Mays, L. W. 1988, Applied hydrology. New York: McGraw-Hill, 572 s. McGraw-Hill series in water resources and environmental engineering. ISBN 0-07-010810-2.

  13. Němeček, J., Mühlhanselová, M., Macků, J., Vokoun, J., Vavříček, D., Novák, P., 2011. Czech Taxonomic Classification System of Soils. ČZU, Praha, (in Czech).

  14. Philip, J. R., 1957, The theory of infiltration, Soil Sci, 1957.

  15. W.H. Green, G.A. Ampt, Studies on soil physics: 1, flow of air and water through soils, J. Agric. Sci., 4 (1911), pp. 1–24

  16. Richards, L.A., Capillary conduction of liquids through porous mediums, 1931 Journal of Applied Physics, 1 (5), pp. 318-333

  17. Van Camp, L., Bujarrabal, B., Gentile, A.-R., Jones, R.J.A., Montanarella, L., Olazabal, Selvaradjou C., S.-K., 2004. Reports of the Technical Working Groups established under the Thematic Strategy for Soil Protection. EUR 21319 EN/2. Office for Official Publications of the European Communities, Luxembourg. 872 pp.

  18. Wischmeier, W. H. − Smith, D. D. Predicting Rainfall Erosion Losses − A Guide to Conservation Planning, Agr. Handbook No.537,US Dept.of Agriculture, Washington, 1978.

  19. Renard, K.G., Foster, G.R., Weesies, G.A., Porter, J.P., 1991, RUSLE: revised universal soil loss equation, Journal of Soil & Water Conservation, 46 (1), pp. 30-33.

  20. Singh, P. V. − Surendra, K. M. Soil Conservation Sevice Curve Number (SCS - CN) Methodology, Kluwer Aca-demic Reserved, 2003, ISBN 1−4020−1132−6

  21. www.ars.usda.gov, 2010.WatershedPhysicalProcessesResearchUnit ; WEPP; cited 5.1.2013; URL: http://www.ars.usda.gov/Research/docs.htm docid=10621

  22. www.ars.usda.gov, 2010.Southwest Watershed Research; KINEROS2, cited 5. 1. 2013; http://www.tucson.ars.ag.gov/kineros/

  23. Schmidt, J. − Werner, M. − Michael, A., 1996, EROSION 2D/3D − Ein Computermodell zur Simulation der Bo-denerosion durch Wasser. Sächsische Landesanstalt für Landwirtschft, Sächsische Landesamt für Umwelt und Geologie. Freiberg,. (in Deutche)

  24. Kavka P, 2011, Calibration and Validation of Model SMODERP, CTU Prague, Prague, PhD. Thesis, in Czech.

  25. Horton RE. 1933, The role of infiltration in the hydrologic cycle. Transactions, American Geophysical Union 14: 446– 460.

  26. Dunne, T. & R. D. Black, 1970 Partial area contributions to storm runoff in a small New-England watershed. Water Resources Research, 6, 1296-&.

  27. Beven, K. (1981) Kinematic Subsurface Stormflow. Water Resources Research, 17, 1419-1424.

  28. Chow, V. T., Maidment, D. R., Mays, L. W. 1988, Applied hydrology. New York: McGraw-Hill, 572 s. McGraw-Hill series in water resources and environmental engineering. ISBN 0-07-010810-2.

  29. Němeček, J., Mühlhanselová, M., Macků, J., Vokoun, J., Vavříček, D., Novák, P., 2011. Czech Taxonomic Classification System of Soils. ČZU, Praha, (in Czech).

  30. Philip, J. R., 1957, The theory of infiltration, Soil Sci, 1957.

  31. W.H. Green, G.A. Ampt, Studies on soil physics: 1, flow of air and water through soils, J. Agric. Sci., 4 (1911), pp. 1–24

  32. Richards, L.A., Capillary conduction of liquids through porous mediums, 1931 Journal of Applied Physics, 1 (5), pp. 318-333

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Number of times cited according to Crossref: 3

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