Plant Soil Environ., 2003, 49(7):298-306 | DOI: 10.17221/4128-PSE

The influence of tillage treatments on water infiltration into soil profile

S. Matula
Czech University of Agriculture in Prague, Czech Republic

Water infiltration into the soil profile and runoff losses in arable lands are related to the condition of the top layer. The tillage treatment (included no-till) of the top layer plays a key role in changes of the hydro-physical properties, mainly saturated hydraulic conductivity (K) of the treated layer. This paper is focused on the influence of repeated tillage treatments in the same locality on K in a relatively homogeneous soil profile. The field experimental work was conducted in 1997 and repeated in 2000 after three years of repeated treatments in an experimental field of the Research Institute of Plant Production, Prague on Hapludalfs (US Classification)/Orthic luvisol (FAO). The whole experimental site was divided into four tillage treatment areas (TTA) that were maintained using different tillage treatments. A pressure ring infiltrometer (Matula and Kozáková 1997), mounted on the top of a single iron infiltration ring was used to run infiltration tests. The infiltration during the steady state flow (for a long time) was measured, evaluated and K values were calculated. Matula (2002) summarised the theoretical background for the pressure ring infiltrometer and described the final equations for evaluation of the infiltration test results. The conventional ploughing did not give any significant changes in K values after three years. Reduced till treatment and no-till treatment show a significant decrease in the infiltration rate v(t) after three years. The K value decreased approximately three times for reduced till and six times for no-till treatment. The decrease on this type of soil can cause several negative results from the aspect of surface soil hydrology and agriculture (surface runoff increase, water storage decrease, yield decrease, increase in soil compaction of surface layer, soil erosion increase).

Keywords: saturated hydraulic conductivity K; tillage treatments; pressure infiltrometer; infiltration test; transect

Published: July 31, 2003  Show citation

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Matula S. The influence of tillage treatments on water infiltration into soil profile. Plant Soil Environ. 2003;49(7):298-306. doi: 10.17221/4128-PSE.
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References

  1. Angulo-Jaramillo R., Vandervaere J.-P., Roulier S., Thony J.-L., Gaudet J.-P., Vauclin M. (2000): Field measurement of soil surface hydraulic properties by disc and ring infiltrometers. A review and recent developments. Soil Till. Res., 55: 1-29. Go to original source...
  2. Blevins R.L., Frye W.W. (1992): Conservation tillage: An ecological approach to soil management. Adv. Agron., 51: 33-78. Go to original source...
  3. Brady N.C., Weil R.R. (1999): The nature and properties of soils. 12th ed. Prentice Hall Inc., New Jersey, USA.
  4. Carter M.R. (1994): Conservation tillage in temperate agroecosystems. Boca Raton, Fla, Lewis Publ., USA.
  5. Elrick D.E., Reynolds W.D. (1992): Methods for analysing constant-head well permeameter data. Soil Sci. Soc. Am. J., 56: 309- 312. Go to original source...
  6. Elrick D.E., Reynolds W.D., Tan K.A. (1989): Hydraulic conductivity measurements in the unsaturated zone using improved well analyses. Ground Water Monit. Rev., 9: 184-193. Go to original source...
  7. Gardner W.R. (1958): Some steady-state solutions of the unsaturated moisture flow equation with application to evaporation from water table. Soil Sci., 85: 228-232. Go to original source...
  8. Klute A. (1982): Tillage effects on the hydraulic properties of the soil: A review. In: Unger P.W., Dooren D.M. van (eds.): Predicting tillage effects on soil physical properties and processes. ASA Spec. Publ. 44: Madison, WI, USA: 29-42. Go to original source...
  9. Kutilek M., Nielsen D.R. (1994): Soil hydrology. Catena Verlag, Cremlingen-Dested, Germany.
  10. Le Bissonnais Y., Arrouays D. (1997): Aggregate stability and assessment of soil crustability and erodibility: II. Application to humic loamy soils with various organic carbon contents. Eur. J. Soil Sci., 48: 39-48. Go to original source...
  11. Matula S. (2002): The influence of tillage methods on the infiltration in soils: In: Physical methods in agriculture. In: Blahovec J., Kutílek M. (eds.): Kluwer Acad. Publ., New York, Boston, Dordrecht, London, Moscow: 61-81. Go to original source...
  12. Matula S., Kozáková H. (1997): A simple pressure infiltrometer for determination of soil hydraulic properties by in situ infiltration measurements. Rostl. Výr., 43: 405-413.
  13. Matula S., Křivohlavý P. (1998a): Tillage effects on the soilhydraulic properties in arable land. Ann. Meet. DVWK, Potsdam, Germany.
  14. Matula S., Křivohlavý P. (1998b): Vliv povrchového zpracování půdy na její půdně-hydraulické vlastnosti. In: Využití různých způsobů zpracování půdy při pěstování rostlin. Sbor. Odb. Semin. VÚRV, VÚZT, VÚP, CZ BIOM: 61-72.
  15. Philip J.R. (1985): Aproximate analysis of the borehole permeameter in unsaturated soils. Water Resour. Res., 21: 1025-1033. Go to original source...
  16. Reynolds W.D., Elrick D.E. (1990): Ponded infiltration from a single ring: I. analysis of steady flow. Soil Sci. Soc. Am. J., 54: 1233-1241. Go to original source...
  17. Reynolds W.D., Elrick D.E. (1991): Determination of hydraulic conductivity using a tension infiltrometer. Soil Sci. Soc. Am. J., 55: 633-639. Go to original source...
  18. White I., Sully M.J. (1987): Macroscopic and microscopic capillary length and time scales from field infiltration. Water Resour. Res., 23: 1514-1522. Go to original source...

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