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首页> 外文期刊>Journal of Hydrology >Rainfall induced chemical transport from soil to runoff: theory and experiments
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Rainfall induced chemical transport from soil to runoff: theory and experiments

机译:降雨引起化学物质从土壤到径流的迁移:理论与实验

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Although both raindrop driven processes and diffusion play important roles in the transfer of chemicals from soil to surface runoff, current transport models either do not consider the two processes together, or use 'effective' parameters with uncertain physical definitions. We developed a physically based, solute transport model that couples both mechanisms and tested it with laboratory experiments. One unique aspect of this study is that all the parameters were either directly measured or previously published, that is, there was no model 'calibration' or 'fitting.' Our model assumes that chemicals near the surface of the soil are ejected into runoff by raindrop impact and chemicals deeper in the soil diffuse into a surface layer, or 'exchange layer,' via diffusion. The exchange layer depth and transfer processes are derived from the 'shield' concept in the Rose soil erosion model (e.g. Rose, 1985). The model's governing equations were solved numerically and the results agreed well with experimental data (R-2 > 0.90). The model's sensitivity to various physical and chemical parameters illuminated the importance of both raindrop controlled processes and diffusion on chemical transport from soil to surface runoff. (C) 2004 Elsevier B.V. All rights reserved.
机译:尽管雨滴驱动的过程和扩散过程在化学物质从土壤到地表径流的转移中都起着重要的作用,但是当前的运输模型要么没有同时考虑这两个过程,要么使用不确定的物理定义的“有效”参数。我们开发了一种基于物理的溶质运移模型,该模型将这两种机制结合在一起并通过实验室实验对其进行了测试。这项研究的独特之处在于,所有参数都是直接测量的或先前已发布的,即没有模型“校准”或“拟合”。我们的模型假设土壤表面附近的化学物质通过雨滴撞击而喷入径流,土壤深处的化学物质通过扩散扩散到表层或“交换层”。交换层深度和转移过程是从玫瑰土壤侵蚀模型中的``屏蔽''概念得出的(例如Rose,1985)。对模型的控制方程进行了数值求解,结果与实验数据吻合良好(R-2> 0.90)。该模型对各种物理和化学参数的敏感性说明了雨滴控制过程和从土壤到地表径流的化学传输扩散的重要性。 (C)2004 Elsevier B.V.保留所有权利。

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