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2005 | 14 | 4 |

Tytuł artykułu

Relation of saturated hydraulic conductivity to soil losses

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The relationship between saturated hydraulic conductivity and the soil erosion process are evident. However, the problem has not been so far sufficiently addressed in research, especially for typical Polish soils. Our paper presents the results of a modeling study on soil erosion losses and saturated hydraulic conductivity that was carried out in natural rainfall events on the 10 most typical farming soil types in Poland. The results show the relationship between saturated hydraulic conductivity and soil losses and saturated hydraulic conductivity jointly with sand texture group and soil losses. The conclusion is that the studies dealing with measuring saturated hydraulic conductivity may be applied to assess soil erosion losses.

Wydawca

-

Rocznik

Tom

14

Numer

4

Opis fizyczny

p.431-435,fig.,ref.

Twórcy

autor
  • Institute of Soil Science and Plant Cultivation, 8 Czartoryskich Street, 24-100 Pulawy, Poland

Bibliografia

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  • 2. USDA (United States Department of Agriculture). Soil Survey Manual. U. S. Dept. Agriculture Handbook No. 18. Washington, D. C., USA. 1951.
  • 3. RENARD K. G., FOSTER G. A., WEESIES G. A. AND McCOOL D. K. Prediction soil erosion by water: a guide to conservation planning with the Revised Universal Soil Loss Equation (RUSLE). Washington D. C.: U. S. Government Printing Office. U. S. Department of Agriculture (USDA) Agriculture Handbook No. 703. 1997.
  • 4. WISCHMEIER W. H. AND SMITH D. D. Prediction rainfall erosion losses. A guide to conservation planning. Agriculture Handbook Number 537, 1978.
  • 5. SHARRATT B. S., LINDSTROM M. J., BENOIT G. R., YOUNG R. A., WILTS A. Runoff and soil erosion during Spring Thaw in the Northern U. S. Corn Belt. Journal of Soil and Water Conservation. pp. 487-493. 2000.
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  • 7. MALLANTS D., JAQUES D., TSENG P. H., VAN GENUCHTEN M. TH., FEYEN J. Comparison of three hydraulic property measurement methods. J. Hydrol. 199, 295, 1997.
  • 8. DEXTER A. R., CZYŻ E. A., NIEDŹWIECKI J. Water run-off as affected by the distributions of values of saturated hydraulic conductivity. Annual Review of Agricultural Engineering. 3 (1), 87, 2004.
  • 9. FAO. Guidelines for soil descriptions. (3rd ed). FAO/ISRIC, Rome, Italy. 1990.
  • 10. HARTGE K. H., HORN R. Die physikalische Untersuchung von Böden. Enke Verlag, Stuttgart: pp. 116-121. 1992.
  • 11. CZYŻ E. A., DEXTER A. R., TERELAK H. Content of readily-dispersible clay in the arable layer of some Polish soils. Advances in GeoEcology, 35. Catena Verlag, Reiskirchen. pp. 115-124. 2002.
  • 12. BLANCO-CANQUI H., CLARK J. GANZER CLARK J., STEPHEN H. ANDERSON, E. E. ALBERTS AND F. GHIDEY. Saturated hydraulic conductivity and its impact on simulated runoff for claypan soils. Soil Science of American Journal. 66, 1596, 2002.
  • 13. FLANAGAN D. C., NEARING M. A. Sensitivity analysis of the WEPP hillslope profile model. Am. Soc. Agric. Eng. Paper No. 91-2074. Am. Soc. Agric. Eng., St. Joseph. 1991.
  • 14. WÖSTEN J. H. M., LILLY A., NEMES A., LE BAS C. Development and use a database of hydraulic properties of European soils. Geoderma. 90, 169, 1999.
  • 15. VEREECEN H., MAES J., FEYEN J. Estimating unsaturated hydraulic conductivity from easily measured properties. Soil Sci. 149, 1, 1990.
  • 16. COSBY, B. J., G. M. HORNBERGER, R. B. CLAPP AND T. R. GINN. A statistical exploration of the relationships of soil moisture characteristics to the physical properties of soils. Water Resour. Res. 20, pp. 682-690. 1984.
  • 17. LOWERY B., SWAN J., JONES A. Physical properties of selected soils by erosion class. Journal of Soil and Water Conservation. 50, 306, 1995.
  • 18. NIEDŹWIECKI J., CZYŻ E. A., DEXTER A. R. Effect of particle size distribution, organic matter and bulk density on saturated hydraulic conductivity of arable soils. Abstract International Workshop “Soil Physical Quality” 2-4 Oct. 2003: pp. 61-64. 2003.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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