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- W2026493604 abstract "To predict the contamination risk of drinking water in a water catchment, regionalization methods, in which regional transferability is presupposed by assigning areas of same qualities, are used. Those methods use soil information at the field scale to build up soil profiles, which serve as input for one-dimensional simulation models of water and solute transport together with management data. These simulation models compute groundwater recharge to determine the transport and contamination risk of solutes. The regionalization method assumes horizontal homogeniety and one representative soil profile (principal profile) for each soil mapping unit. Our objective is to show that those regionalization methods have to be improved in regions of high spatial variability of soil qualities. As an example we examine a terminal moraine typical of northern Germany. We combine intensive investigations of the soil structure, long-time field observations and simulation results to show the necessity to improve methods for soil mapping. Our results suggest that it is necessary to perform higher-dimensional simulations of water and solute transport in regions of high spatial soil structure variability. Two-dimensional simulations compute earlier and higher groundwater recharge rates than one-dimensional simulations." @default.
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- W2026493604 date "1996-02-01" @default.
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- W2026493604 title "Soil-water behaviour in a push terminal moraine: comparison of one- and two-dimensional simulations based on intensive regional field observations" @default.
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- W2026493604 doi "https://doi.org/10.1016/0016-7061(95)00067-4" @default.
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