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首页> 外文期刊>Hydrological Processes >Effects of differential hillslope‐scale water retention characteristics on rainfall–runoff response at the Landscape Evolution Observatory
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Effects of differential hillslope‐scale water retention characteristics on rainfall–runoff response at the Landscape Evolution Observatory

机译:景观演变天文台山坡尺度保水特征对降雨径流响应的影响

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摘要

Hillslopes turn precipitation into runoff and thus exert important controls on various Earth system processes. It remains difficult to collect reliable data necessary for understanding and modeling these Earth system processes in real catchments. To overcome this problem, controlled experiments are being conducted at the Landscape Evolution Observatory at Biosphere 2, The University of Arizona. Previous experiments have revealed differences in hydrological response between 2 landscapes within Landscape Evolution Observatory, even though both landscapes were designed to be identical. In an attempt to discover where the observed differences stem from, we use a fully 3-dimensional hydrological model (CATchment HYdrology) to show the effect of soil water retention characteristics and saturated hydraulic conductivity on the hydrological response of these 2 hillslopes. We also show that soil water retention characteristics can be derived at hillslope scale from experimental observations of soil moisture and matric potential. It is found that differences in soil packing between the 2 landscapes may be responsible for the observed differences in hydrological response. This modeling study also suggests that soil water retention characteristics and saturated hydraulic conductivity have a profound effect on rainfall-runoff processes at hillslope scale and that parametrization of a single hillslope may be a promising step in modeling rainfall-runoff response in real catchments.
机译:山坡将降水变成径流,从而对各种地球系统过程施加重要控制。收集真正的流域中理解和模拟这些地球系统过程所需的可靠数据仍然很困难。为了克服这个问题,亚利桑那大学生物圈2号景观演化天文台正在进行受控实验。先前的实验已经揭示了景观演变天文台内两个景观在水文响应方面的差异,即使这两个景观被设计为相同。为了发现观测到的差异的根源,我们使用了全三维水文模型(CATchment HYdrology)来显示土壤保水特性和饱和导水率对这两个山坡水文响应的影响。我们还表明,土壤保水特性可以从土壤水分和基质势的实验观察中得出,以坡度为单位。结果发现,这两种景观之间的土壤充填差异可能是造成观测到的水文响应差异的原因。该模型研究还表明,土壤保水特性和饱和导水率对山坡尺度的降雨-径流过程具有深远的影响,单个坡度的参数化可能是对真实流域降雨-径流响应进行建模的有希望的步骤。

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