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首页> 外文期刊>Journal of Hydrology >Regionalization of subsurface stormflow parameters of hydrologic models: Derivation from regional analysis of streamflow recession curves
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Regionalization of subsurface stormflow parameters of hydrologic models: Derivation from regional analysis of streamflow recession curves

机译:水文模型地下雨流参数的区域化:从径流衰退曲线的区域分析得出

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摘要

Subsurface stormflow is an important component of the rainfall-runoff response, especially in steep terrain. Its contribution to total runoff is, however, poorly represented in the current generation of land surface models. The lack of physical basis of these common parameterizations precludes a priori estimation of the stormflow (i.e. without calibration), which is a major drawback for prediction in ungauged basins, or for use in global land surface models. This paper is aimed at deriving regionalized parameterizations of the storage-discharge relationship relating to subsurface stormflow from a top-down empirical data analysis of streamflow recession curves extracted from 50 eastern United States catchments. Detailed regression analyses were performed between parameters of the empirical storage-discharge relationships and the controlling climate, soil and topographic characteristics. The regression analyses performed on empirical recession curves at catchment scale indicated that the coefficient of the power-law form storage-discharge relationship is closely related to the catchment hydrologic characteristics, which is consistent with the hydraulic theory derived mainly at the hillslope scale. As for the exponent, besides the role of field scale soil hydraulic properties as suggested by hydraulic theory, it is found to be more strongly affected by climate (aridity) at the catchment scale. At a fundamental level these results point to the need for more detailed exploration of the co-dependence of soil, vegetation and topography with climate. (C) 2014 Elsevier B.V. All rights reserved.
机译:地下暴雨是降雨径流响应的重要组成部分,特别是在陡峭的地形中。但是,在当前一代的地表模型中,它对总径流量的贡献很少体现。这些通用参数设置的物理基础不足,无法对暴雨流量进行先验估计(即不进行校准),这对于未加支流盆地的预测或用于全球陆地表面模型的主要缺点是。本文旨在从自美国东部50个流域提取的水流衰退曲线的自上而下的经验数据分析中,得出与地下暴雨有关的储-排关系的区域化参数化。在经验储-排关系的参数与控制气候,土壤和地形特征之间进行了详细的回归分析。对流域尺度上的经验性衰退曲线进行的回归分析表明,幂律形式储水关系系数与流域水文特征密切相关,这与主要在坡度尺度上得出的水力理论是一致的。至于指数,除了水力理论所建议的田间规模土壤水力特性的作用外,还发现集水区规模受气候(干旱)的影响更大。从根本上讲,这些结果表明需要更详细地探索土壤,植被和地形与气候之间的相互关系。 (C)2014 Elsevier B.V.保留所有权利。

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