EFFECTS OF CRUST DEVELOPMENT AND SURFACE SLOPE ON EROSION BY RAINFALL
M. G. C. MAH, L. A. Douglas, A. J. Ringrose-Voase
Abstract
M. G. C. MAH, L. A. Douglas, A. J. Ringrose-Voase
Abstract
Erosion losses were determined when simulated rainfall (50 mm h-1) was applied to 1 m x 1 m field plots on three soils (Rhodoxeralf, Calciorthid, Natrixeralf) having surface slopes of 1–2%, 4–5%, and 7–8%. Low soil loss and high runoff volumes from the Rhodoxeralf were related to the rainfall-induced development of low hydraulic conductivity (K) and low macroporosity in the 0–2 mm-soil layer. Higher soil loss and lower runoff rates noted for the Calciorthid and the Natrixeralf were associated with higher K and macroporosity values for the surface soil. Soil loss from the Calciorthid, which had 29% coarse sand and 48% fine sand, increased markedly as the surface slope increased to 4–5% and 7–8%.
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Erosion losses were determined when simulated rainfall (50 mm h-1) was applied to 1 m x 1 m field plots on three soils (Rhodoxeralf, Calciorthid, Natrixeralf) having surface slopes of 1–2%, 4–5%, and 7–8%. Low soil loss and high runoff volumes from the Rhodoxeralf were related to the rainfall-induced development of low hydraulic conductivity (K) and low macroporosity in the 0–2 mm-soil layer. Higher soil loss and lower runoff rates noted for the Calciorthid and the Natrixeralf were associated with higher K and macroporosity values for the surface soil. Soil loss from the Calciorthid, which had 29% coarse sand and 48% fine sand, increased markedly as the surface slope increased to 4–5% and 7–8%.
Key concepts: Surface runoff, Erosion, Soil loss, Soil water, Soil science, Environmental science, Hydrology (agriculture), Hydraulic conductivity