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Soil erosion due to rainfall impact with inflow: an analytical solution with spatial and temporal effects

机译:降雨对流入的降雨造成的土壤侵蚀:具有时空效应的分析解决方案

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摘要

An approximate analytical solution is obtained for a physically based model of soil erosion on a gentle slope driven by rainfall impact in which there is inflow of clear or nearly clear water to the top of the soil bed. Comparison of the approximate analytical and numerical solutions shows very good agreement, except for the first few minutes of an erosion event. The approximate analytic solution is applied using data from an illustrative experiment to explore its physical features. The importance of adequately defining the soil's settling velocity characteristic through the use of a sufficient number of sediment size classes, especially for prediction at short times, is illustrated. The temporal variation in sediment concentration, except at short times, is shown to be more significant than the spatial variation down the eroding surface. Solution of the equations allows visualization of the rate of convective transport of sediment down the eroding surface, this rate decreasing as sediment size increased due to more frequent return of such particles to the soil surface in deposition. (C) 2004 Elsevier B.V. All rights reserved.
机译:对于由降雨影响驱动的缓坡上的土壤侵蚀的基于物理的物理模型,可以获得近似的解析解,其中有清澈或接近清澈的水流入土壤床的顶部。近似分析和数值解的比较显示出很好的一致性,除了侵蚀事件的前几分钟。使用来自说明性实验的数据来应用近似分析解决方案,以探索其物理特征。说明了使用足够数量的沉积物尺寸分类来充分定义土壤沉降速度特性的重要性,尤其是对于短时间的预测而言。除短期外,沉积物浓度的时间变化比腐蚀表面下的空间变化更显着。这些方程式的解决方案使可视化的沉积物对流向下侵蚀表面的速率,随着沉积物尺寸的增加,这种速率降低,这是由于这种颗粒在沉积过程中更频繁地返回土壤表面。 (C)2004 Elsevier B.V.保留所有权利。

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