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MEASURING AND MODELLING OF SOIL WATER DYNAMICS AND RUNOFF GENERATION IN AN AGRICULTURAL LOESSIAL HILLSLOPE

机译:农业黄土丘陵区土壤水分动态及产流的测量与建模。

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Surface runoff may be generated when the rainfall intensity exceeds the infiltration capacity, or when the soil profile is saturated with water. Indications exist that both types of overland flow may occur in hilly agricultural loess regions. Here, for a loessial hillslope under maize in the southern part of The Netherlands, it was shown, with pressure head and runoff measurements, that Hortonian overland flow occurs during typical summer rain events. Surface runoff was initiated after saturation of the top 5–10 cm of the soil. Deeper in the soil, unsaturated conditions prevailed while runoff took place. Peak runoff discharges at the outlet of the subcatchment occurred a few minutes after peak rainfall intensities were measured. It appeared that SWMS_2D, a two-dimensional water flow model, was capable in simulating observed pressure head changes and runoff. Simulated potential runoff for the transect studied was higher by a magnitude of three than the measured areal average. This indicates effects of surface ponding, and the probable location of this particular transect in a region with high runoff production.
机译:当降雨强度超过入渗能力时,或者当土壤剖面被水饱和时,可能会产生地表径流。有迹象表明在丘陵的农业黄土地区都可能发生两种类型的陆上径流。在此,对于荷兰南部玉米下的一个黄土丘陵山坡,通过压力水头和径流量的测量表明,霍顿水流在典型的夏季降雨事件中发生。在土壤表层5-10cm饱和后开始地表径流。在土壤更深处,径流发生时处于非饱和条件。在测量峰值降雨强度后的数分钟内,在子汇水面积的出口出现了峰值径流量。看来,二维水流模型SWMS_2D能够模拟观察到的压头变化和径流。对于所研究的样带,模拟的潜在径流比所测量的面积平均值高三个数量级。这表明了地表淤积的影响,以及该特定样带在高产地径流地区的可能位置。

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