globalchange  > 气候变化事实与影响
DOI: 10.5194/hess-21-5181-2017
Scopus记录号: 2-s2.0-85031814429
论文题名:
Impacts of a capillary barrier on infiltration and subsurface stormflow in layered slope deposits monitored with 3-D ERT and hydrometric measurements
作者: Hübner R; , Günther T; , Heller K; , Noell U; , Kleber A
刊名: Hydrology and Earth System Sciences
ISSN: 10275606
出版年: 2017
卷: 21, 期:10
起始页码: 5181
结束页码: 5199
语种: 英语
Scopus关键词: Catchments ; Deposits ; Flow of water ; Groundwater flow ; Hydraulics ; Irrigation ; Seepage ; Storms ; Capillary barrier effect ; Electrical resistivity tomography ; High spatial resolution ; High temporal resolution ; Hydrological condition ; Hydrological properties ; Hydrometric measurements ; Periglacial slope deposits ; Infiltration ; capillarity ; catchment ; electrical resistivity ; hillslope ; hydrological modeling ; hydrometry ; seepage ; slope angle ; spatial resolution ; tomography ; water flow
英文摘要: Identifying principles of water movement in the shallow subsurface is crucial for adequate process-based hydrological models. Hillslopes are the essential interface for water movement in catchments. The shallow subsurface on slopes typically consists of different layers with varying characteristics. The aim of this study was to draw conclusions about the infiltration behaviour, to identify water flow pathways and derive some general interpretations for the validity of the water movement on a hillslope with periglacial slope deposits (cover beds), where the layers differ in their sedimentological and hydrological properties. Especially the described varying influence of the basal layer (LB) as an impeding layer on the one hand and as a remarkable pathway for rapid subsurface stormflow on the other. We used a time lapse 3-D electrical resistivity tomography (ERT) approach combined with punctual hydrometric data to trace the spreading and the progression of an irrigation plume in layered slope deposits during two irrigation experiments. This multi-Technical approach enables us to connect the high spatial resolution of the 3-D ERT with the high temporal resolution of the hydrometric devices. Infiltration through the uppermost layer was dominated by preferential flow, whereas the water flow in the deeper layers was mainly matrix flow. Subsurface stormflow due to impeding characteristic of the underlying layer occurs in form of organic layer interflow and at the interface to the first basal layer (LB1). However, the main driving factor for subsurface stormflow is the formation of a capillary barrier at the interface to the second basal layer (LB2). The capillary barrier prevents water from entering the deeper layer under unsaturated conditions and diverts the seepage water according to the slope inclination. With higher saturation, the capillary barrier breaks down and water reaches the highly conductive deeper layer. This highlights the importance of the capillary barrier effect for the prevention or activation of different flow pathways under variable hydrological conditions.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/79026
Appears in Collections:气候变化事实与影响

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作者单位: Institute of Geography, Dresden University of Technology, Helmholtzstr. 10, Dresden, Germany; Leibniz Institute for Applied Geophysics (LIAG), Stilleweg 2, Hanover, Germany; Federal Institute for Geosciences and Natural Resources (BGR), Stilleweg 2, Hanover, Germany

Recommended Citation:
Hübner R,, Günther T,, Heller K,et al. Impacts of a capillary barrier on infiltration and subsurface stormflow in layered slope deposits monitored with 3-D ERT and hydrometric measurements[J]. Hydrology and Earth System Sciences,2017-01-01,21(10)
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