Subsurface Sediment Transport in the Shallow Vadose Zone of Fine-Textured Soils With Heterogenous Preferential Flows

IF 3.2 3区 地球科学 Q1 Environmental Science Hydrological Processes Pub Date : 2024-11-10 DOI:10.1002/hyp.15327
William Ford, Mark Williams, Rose Mumbi
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Abstract

Subsurface sediment transport in tile-drained landscapes occurs through macropores; however, little is known regarding how heterogeneous preferential flows influence fluxes. We performed laboratory rainfall simulations on 10 intact core lysimeters from a tile-drained field in Indiana, USA to study the impacts of surface and subsurface erosion on sediment leachate in heterogeneous preferential flow paths. Seven rainfall simulations were conducted to assess the impact of rainfall intensity on the leachate of surface eroded sediments (three events), and the impact of antecedent conditions on subsurface eroded sediments (four events). Cumulative sediment yield, linear mixed effects modelling, and hysteresis analyses were performed for all events. Results were presented in a series of four case studies. Results showed that surface sediment leachate concentration and yield were tightly linked to the filtration capacity of lysimeters, with more than 2/3rd of sediment originating from a single lysimeter, despite similar flow leachate volumes from each. Rainfall intensity significantly impacted the transport of surface eroded sediment at the highest intensity. Subsurface sediment erosion from undisturbed macropores was low compared to surface soils, but we found contrasting controls on sediment concentrations at low and high antecedent moistures that were equally important to sediment leachate yields. Disturbed macropores produced comparable sediment yields to surface erosion and behaved similarly to soil pipes in terms of erosion mechanics. Hysteresis results generally highlighted contrasting results for surface and subsurface sources but suggest that the prominence of slow flow, low-concentration leachate sources can alter the interpretation of results in field-scale applications. Our findings underscore an array of processes and pathways for sediment transport in the shallow vadose zone, and results will be useful for evaluating new model formulations.

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具有异质优先流的细粒度土壤浅层滞留带的地下沉积物迁移
瓦片排水地貌中的次表层沉积物迁移是通过大孔隙进行的;然而,人们对异质优先流如何影响通量知之甚少。我们对来自美国印第安纳州瓦片排水田的 10 个完整的岩心渗滤池进行了实验室降雨模拟,以研究地表和地下侵蚀对异质优先流路径中沉积物渗滤液的影响。进行了七次降雨模拟,以评估降雨强度对地表侵蚀沉积物沥滤液的影响(三次事件),以及前兆条件对地下侵蚀沉积物的影响(四次事件)。对所有事件都进行了累积沉积物产量、线性混合效应建模和滞后分析。结果以四个案例研究系列的形式呈现。结果表明,地表沉积物沥滤液的浓度和产量与渗滤池的过滤能力密切相关,尽管每个渗滤池的沥滤液流量相似,但超过三分之二的沉积物来自于一个渗滤池。降雨强度最高时,地表侵蚀沉积物的迁移会受到很大影响。与地表土壤相比,未受扰动的大孔隙对地表下沉积物的侵蚀程度较低,但我们发现,在低湿度和高湿度条件下,对沉积物浓度的控制截然不同,这对沉积物沥滤液产量同样重要。扰动大孔产生的沉积物量与地表侵蚀相当,在侵蚀力学方面的表现与土壤管道类似。滞后结果普遍突出了地表和地下源的对比结果,但也表明,慢流、低浓度沥滤液源的显著性可能会改变对实地应用结果的解释。我们的研究结果强调了浅滩区沉积物迁移的一系列过程和途径,这些结果将有助于评估新的模型公式。
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来源期刊
Hydrological Processes
Hydrological Processes 环境科学-水资源
CiteScore
6.00
自引率
12.50%
发文量
313
审稿时长
2-4 weeks
期刊介绍: Hydrological Processes is an international journal that publishes original scientific papers advancing understanding of the mechanisms underlying the movement and storage of water in the environment, and the interaction of water with geological, biogeochemical, atmospheric and ecological systems. Not all papers related to water resources are appropriate for submission to this journal; rather we seek papers that clearly articulate the role(s) of hydrological processes.
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