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How Surface Conditions Affect Sediment and Chemical Transport

机译:表面条件如何影响沉积物和化学物质的运输

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Soil erosion process research produces knowledge and science used in the development of current process-based erosion prediction models. This paper highlights recent progresses at the USDA-ARS National Soil Erosion Research Laboratory (NSERL) on effects of soil surface conditions, i.e., roughness and moisture gradient, on sediment and chemical transport. We showed that surface depression caused a delay in runoff initiation. But once runoff was initiated, surfaces with depressions did not show any sediment reduction as compared those without depressions. On the surface hydrologic effects, saturation and seepage conditions greatly enhanced sediment and chemical transport. These findings showed the importance of understanding surface condition effects for better management strategies to minimize the sediment and chemical transport at the landscape. Also included in this paper are brief descriptions on experimental techniques using (1) a line-scan laser system to measure surface microtopography; and (2) a multiple-box system to quantify processes at a hillslope segment.
机译:土壤侵蚀过程研究产生了知识和科学知识,这些知识和科学被用于当前基于过程的侵蚀预测模型的开发中。本文重点介绍了USDA-ARS国家土壤侵蚀研究实验室(NSERL)在土壤表面条件(即粗糙度和湿度梯度)对沉积物和化学物质运输的影响方面的最新进展。我们表明,地表凹陷导致径流启动延迟。但是,一旦开始径流,具有凹陷的表面与没有凹陷的表面相比没有任何沉积物减少。在地表水文作用上,饱和度和渗流条件大大增强了沉积物和化学物质的输送。这些发现表明,了解地表条件的影响对于更好的管理策略以最小化景观中的沉积物和化学物质运输的重要性。本文还包括对使用以下技术的实验技术的简要说明:(1)线扫描激光系统测量表面微观形貌; (2)多盒系统,用于量化坡道段上的过程。

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