Effects of simulated rainfall intensity on water flow through soil in two tillage systems

Diffuse losses of phosphorus from agricultural land to freshwater reservoirs have gained increasing interest in later years. Resent research suggests that phosphorus is mainly transported from the fields through macropores, and that soil under reduced forms of tillage can develop a higher macroporos...

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Autor principal: Sandin, Maria
Formato: Second cycle, A1E
Lenguaje:sueco
Inglés
Publicado: 2012
Materias:
Acceso en línea:https://stud.epsilon.slu.se/4970/
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author Sandin, Maria
author_browse Sandin, Maria
author_facet Sandin, Maria
author_sort Sandin, Maria
collection Epsilon Archive for Student Projects
description Diffuse losses of phosphorus from agricultural land to freshwater reservoirs have gained increasing interest in later years. Resent research suggests that phosphorus is mainly transported from the fields through macropores, and that soil under reduced forms of tillage can develop a higher macroporosity and thus an increased risk of phosphorus leaching compared to conventionally tilled soil, because of the more rapid flows of water through the soil. In this study field measurements of flow responses to variations in rainfall and laboratory measurements of soil dry bulk density, soil porosity and soil water retention characteristics were compared for a heavy clay soil subject to reduced and conventional tillage respectively. In the field, rainfall with intensities of 10 or 33 mm/h were simulated and percolating water was collected from a cavity dug out at 40-45 cm depth and the collected volume was measured at given times. A simple dual-permeability model was also made and its ability to describe flow responses to changes in rainfall intensity was evaluated through comparison with the field measurements. Flow responses to variations in rainfall intensity were rather similar between the two tillage treatments. Stabilized outflow rates were also very similar between the treatments; between 4 and 8.5 mm/h under the lower rainfall intensity and between 22 and 28 mm/h under the higher. Neither of the parameters measured at the lab showed any clear differences between the two tillage treatments. The model was able to describe the timing of changes in outflow in response to changes in rainfall intensity, but the simulated outflow rate was higher than what was measured and the model also described different final soil water contents after rainfall from those that were measured. Overall, the measurements did not show any effect of tillage treatment on soil hydraulic properties on the profile scale; flow showed dependence mainly on rainfall intensity and soil moisture conditions. The model would need to account for water flow from macropores to matrix to better be able to describe the total outflow from the profile.
format Second cycle, A1E
id RepoSLU4970
institution Swedish University of Agricultural Sciences
language Swedish
Inglés
publishDate 2012
publishDateSort 2012
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spelling RepoSLU49702012-10-18T14:30:12Z https://stud.epsilon.slu.se/4970/ Effects of simulated rainfall intensity on water flow through soil in two tillage systems Sandin, Maria Soil cultivation Soil chemistry and physics Diffuse losses of phosphorus from agricultural land to freshwater reservoirs have gained increasing interest in later years. Resent research suggests that phosphorus is mainly transported from the fields through macropores, and that soil under reduced forms of tillage can develop a higher macroporosity and thus an increased risk of phosphorus leaching compared to conventionally tilled soil, because of the more rapid flows of water through the soil. In this study field measurements of flow responses to variations in rainfall and laboratory measurements of soil dry bulk density, soil porosity and soil water retention characteristics were compared for a heavy clay soil subject to reduced and conventional tillage respectively. In the field, rainfall with intensities of 10 or 33 mm/h were simulated and percolating water was collected from a cavity dug out at 40-45 cm depth and the collected volume was measured at given times. A simple dual-permeability model was also made and its ability to describe flow responses to changes in rainfall intensity was evaluated through comparison with the field measurements. Flow responses to variations in rainfall intensity were rather similar between the two tillage treatments. Stabilized outflow rates were also very similar between the treatments; between 4 and 8.5 mm/h under the lower rainfall intensity and between 22 and 28 mm/h under the higher. Neither of the parameters measured at the lab showed any clear differences between the two tillage treatments. The model was able to describe the timing of changes in outflow in response to changes in rainfall intensity, but the simulated outflow rate was higher than what was measured and the model also described different final soil water contents after rainfall from those that were measured. Overall, the measurements did not show any effect of tillage treatment on soil hydraulic properties on the profile scale; flow showed dependence mainly on rainfall intensity and soil moisture conditions. The model would need to account for water flow from macropores to matrix to better be able to describe the total outflow from the profile. 2012-10-16 Second cycle, A1E NonPeerReviewed application/pdf sv https://stud.epsilon.slu.se/4970/1/sandin_m_121016.pdf Sandin, Maria, 2012. Effects of simulated rainfall intensity on water flow through soil in two tillage systems. Second cycle, A1E. Uppsala: (NL, NJ) > Dept. of Soil and Environment <https://stud.epsilon.slu.se/view/divisions/OID-435.html> urn:nbn:se:slu:epsilon-s-1783 eng
spellingShingle Soil cultivation
Soil chemistry and physics
Sandin, Maria
Effects of simulated rainfall intensity on water flow through soil in two tillage systems
title Effects of simulated rainfall intensity on water flow through soil in two tillage systems
title_full Effects of simulated rainfall intensity on water flow through soil in two tillage systems
title_fullStr Effects of simulated rainfall intensity on water flow through soil in two tillage systems
title_full_unstemmed Effects of simulated rainfall intensity on water flow through soil in two tillage systems
title_short Effects of simulated rainfall intensity on water flow through soil in two tillage systems
title_sort effects of simulated rainfall intensity on water flow through soil in two tillage systems
topic Soil cultivation
Soil chemistry and physics
url https://stud.epsilon.slu.se/4970/
https://stud.epsilon.slu.se/4970/