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首页> 外文期刊>Soil Science >Role of leaf litter in initiating tracer transport pathways in a woodland hillslope soil
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Role of leaf litter in initiating tracer transport pathways in a woodland hillslope soil

机译:叶凋落物在林地山坡土壤中引发示踪剂运输途径中的作用

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摘要

It has been suggested that the leaf litter layer influences soil infiltration processes in hillslopes. This paper examines the effect of the presence of the leaf fitter layer in an oak woodland on conservative tracer transport measured in situ using time domain reflectometry (TDR) probes. This was done using repeated tracer miscible displacement studies, first with the fitter layer intact and then again after removal of the litter layer. Tracer transport, as measured breakthrough curves (BTCs), was characterized using temporal moment analyses. These plot scale studies, performed at a field location in northern California, did not identify consistent changes in tracer transport patterns in the vertical transport plots before and after litter layer removal. In contrast, downslope lateral tracer displacement in the upper 20 cm of the soil did change after fitter removal. However, no differences were evident deeper in the soil (30-50 cm) in temporal moments before and after fitter removal during lateral tracer transport. This result demonstrates that the fitter layer had a localized (near soil surface) influence on lateral transport. This influence may be explained by vertical anisotropy in effective soil hydraulic conductivity on the direction of lateral flow relative to the soil surface in the hillslope plots. It was demonstrated. that the litter presence promotes a more vertical direction for the lateral flow in the first 20 cm of the soil. Despite the small changes in the first 20 cm observed in tracer transport after fitter removal, the physical presence of the leaf litter layer was not found to be a major influence on tracer transport at the 30- to 50-cm depth in this hillslope soil where most of the lateral flow occurs.
机译:有人认为,凋落物层会影响坡地的土壤入渗过程。本文研究了使用时域反射计(TDR)探针在橡树林地中存在叶适匠层对保守示踪剂运输的影响。这是使用重复的示踪剂可混溶位移研究完成的,首先要使填充层完好无损,然后在清除垫料层之后再进行一次。示踪剂运输,作为测得的突破曲线(BTC),使用时间矩分析进行了表征。这些地块规模研究是在加利福尼亚北部的一个野外地点进行的,并未发现在清除垫料层之前和之后在垂直运输区中示踪剂运输方式的一致变化。相反,去除钳工后,土壤上部20 cm处的下坡横向示踪剂位移确实发生了变化。然而,在横向示踪剂运输过程中,在钳工拆除之前和之后的短暂时间内,在土壤深处(30-50 cm)没有明显差异。该结果表明,钳工层对侧向运输具有局部(近土壤表面)影响。这种影响可以用有效的土壤水力传导率的垂直各向异性来解释,即在山坡图中相对于土壤表面的横向流动方向。证明了。垫料的存在促进了土壤前20 cm的横向流动的更垂直方向。尽管去除钳工后示踪物运输的前20 cm发生了微小变化,但在该坡地土壤中30到50 cm深度处,叶凋落物层的物理存在并未发现对示踪物运输的主要影响。大部分侧向流发生。

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