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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >A new approach for simulating the redistribution of soil particles by water erosion: A marker-in-cell model
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A new approach for simulating the redistribution of soil particles by water erosion: A marker-in-cell model

机译:一种模拟水蚀导致土壤颗粒重新分布的新方法:细胞标记模型

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There are currently no process-based approaches that allow detailed spatial information on soil redistribution on hillslopes to be modeled at spatial scales that are appropriate for studying slope processes. In response, we developed a new type of soil-erosion model, a marker-in-cell model, which simulates the redistribution of soil during rainfall events. The model is a hybrid of cell-and particle-based techniques. A cell-based model is used to determine the hydrology and hydraulics occurring at the cellular scale on the hillslope. Markers, representing sediment, are then moved through the grid according to these properties. The spatial pattern of erosion is determined directly by the properties of the markers. The model allows two-dimensional spatial patterns of individual particle movement on a hillslope to be simulated within a computationally efficient framework. We have tested the model using data collected from a plot-scale, rainfall-simulation experiment. We measured the redistribution of 137Cs-rich tracer soil to resolve the spatial patterns of erosion caused by a single, high-intensity, rainfall event. The model was able to recreate the key temporal and spatial aspects of the hydrology and hydraulics occurring on the plot, as well as the spatial redistribution of 137Cs-rich tracer soil. The development of the model was used to probe our understanding of how to investigate soil-erosion processes. The lack of empirical underpinnings of the different model components highlighted the need to understand the spatiotemporal dynamics of soil erosion processes at the grain-scale so to provide a better process-based understanding of detachment and transport can be sought.
机译:当前,没有基于过程的方法可以在适合研究边坡过程的空间尺度上对山坡上的土壤重新分布的详细空间信息进行建模。作为响应,我们开发了一种新型的土壤侵蚀模型,即单元标记模型,该模型可以模拟降雨事件期间土壤的重新分布。该模型是基于细胞和粒子技术的混合体。基于单元的模型用于确定山坡上细胞尺度上发生的水文和水力学。然后根据这些属性,将代表沉积物的标记移过网格。侵蚀的空间模式直接由标记的属性确定。该模型允许在有效计算的框架内模拟单个粒子在山坡上运动的二维空间模式。我们已使用从样地规模的降雨模拟实验收集的数据对模型进行了测试。我们测量了富含137 Cs的示踪剂土壤的重新分布,以解决由单个高强度降雨事件引起的侵蚀的空间格局。该模型能够重现发生在该样地上的水文和水力学的关键时空方面,以及富含137 Cs的示踪土壤的空间再分布。该模型的发展被用来探索我们对如何研究土壤侵蚀过程的理解。缺乏不同模型组成部分的经验基础,突显了需要了解谷物规模土壤侵蚀过程的时空动态,以便寻求对分离和运输更好的基于过程的理解。

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