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Implications of hydrologic connectivity between hillslopes and riparian zones on streamflow composition

机译:山坡与河岸带水文连通性对径流组成的影响

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摘要

Hydrological responses in mountainous headwater catchments are often highly non-linear with a distinct threshold-related behavior, which is associated to steep hillslopes, shallow soils and strong climatic variability. A holistic understanding of the dominant physical processes that control streamflow generation and non-linearity is required in order to assess potential negative effects of agricultural land use and water management in those areas. Therefore, streamflow generation in a small pre-Alpine headwater catchment (Upper Rietholzbach (URHB), -1 km~2) was analyzed over a 2-year period by means of rainfall-response analysis and water quality data under explicit consideration of the joint behaviors of climate forcing and shallow groundwater dynamics. The runoff coefficients indicate that only a small fraction of the total catchment area (1-26%) generates streamflow during rainfall events. Hereby, the valley bottom areas (riparian zones) were the most important event-water source whereas only the lower parts of the hillslopes became hydrologically connected to the river network with higher antecedent moisture conditions. However, a distinct threshold-like behavior could not be observed, suggesting a more continuous shift from a riparian-zone to a more hillsiope-dominated streamflow hydrograph. Regular manure application on the hillslopes in combinations with lateral hillslope groundwater flux and long groundwater residence times in the riparian zones resulted in a higher mineralization (e.g., total phosphorous) and significant denitriflcation in the valley bottom area. Despite the important role of the riparian zones for event-flow generation in the URHB, their nutrient buffer capacity is expected to be small due to the low permeability of the local subsurface material. The findings of this integrated analysis are summarized in a conceptual framework describing the hydrological functioning of hillslopes and riparian zones in the URHB.
机译:山区源头流域的水文响应通常是高度非线性的,具有与阈值相关的独特行为,这与陡峭的山坡,浅层土壤和强烈的气候变化性有关。需要全面了解控制流量生成和非线性的主要物理过程,以便评估这些地区的农业土地利用和水资源管理的潜在负面影响。因此,在明确考虑联合因素的前提下,通过降雨响应分析和水质数据,分析了一个小型的阿尔卑斯山前水源流域(上里特霍尔茨巴赫(URHB),-1 km〜2)中的水流产生。强迫行为和浅层地下水动力学。径流系数表明,在降雨事件期间,只有小部分集水区(1-26%)会产生水流。因此,谷底区域(河岸带)是最重要的事件水源,而只有山坡的下部在水文条件较高的情况下才与水网连通。但是,没有观察到明显的类似阈值的行为,这表明从河岸带向山丘型为主的水流水文图更加连续。定期在山坡上施肥,结合横向山坡地下水通量和在河岸带中较长的地下水停留时间,导致较高的矿化度(例如,总磷)并在谷底区域显着脱氮。尽管河岸带在URHB中产生事件流中起着重要作用,但由于当地地下物质的渗透性低,预计它们的营养缓冲能力很小。该综合分析的结果总结在一个概念框架中,描述了URHB山坡和河岸带的水文功能。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第11期|62-74|共13页
  • 作者单位

    Eawag Swiss Federal Institute of Aquatic Science and Technology, Department of Water Resources and Drinking Water, 8600 Duebendorf, Switzerland, University of Neuchatel, Centre for Hydrogeology and Geothermics, 2000 Neuchatel Switzerland;

    Eawag Swiss Federal Institute of Aquatic Science and Technology, Department of Water Resources and Drinking Water, 8600 Duebendorf, Switzerland;

    The Pennsylvania State University, Department of Agricultural and Biological Engineering, 232 Agricultural Engineering Building, University Park, PA 16802;

    Eawag Swiss Federal Institute of Aquatic Science and Technology, Department of Water Resources and Drinking Water, 8600 Duebendorf, Switzerland, University of Neuchatel, Centre for Hydrogeology and Geothermics, 2000 Neuchatel Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mountainous catchments; Hydrologic connectivity; Groundwater-surface water interaction; Landscape; Nutrient transport; Rainfall-runoff response;

    机译:山区流域;水文连通性;地下水与地表水的相互作用;景观;营养运输;降雨径流响应;
  • 入库时间 2022-08-17 13:39:58

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