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Quantifying flows along hydrological pathways by applying a new filtering algorithm in conjunction with master recession curve analysis

机译:通过应用新的过滤算法与母衰退曲线分析一起应用新的过滤算法量化流量

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Quantifying the proportion of the river hydrograph derived from the different hydrological pathways is essential for understanding the behaviour of a catchment. This paper describes a new approach using the output from master recession curve analysis to inform a new algorithm based on the Lyne and Hollick one-parameter' signal analysis filtering algorithm. This approach was applied to six catchments (including two subcatchments of these) in Ireland. The conceptual model for each catchment consists of four main flow pathways: overland flow, interflow, shallow groundwater and deep groundwater. The results were compared with those of the master recession curve analysis, a recharge coefficient approach developed in Ireland and the semi-distributed, lumped and deterministic hydrological model NedbOr-AfstrOmings-Model. The new algorithm removes the free variable' aspect that is typically associated with filtering algorithms and provides a means of estimating the contribution of each pathway that is consistent with the results of hydrograph separation in catchments that are dominated by quick response pathways. These types of catchments are underlain by poorly productive aquifers that are not capable of providing large baseflows in the river. Such aquifers underlie over 73% of Ireland, ensuring that this new algorithm is applicable in the majority of catchments in Ireland and potentially in those catchments internationally that are strongly influenced by the quick-responding hydrological pathways. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:量化源自不同水文途径的河流的比例对于了解集水区的行为至关重要。本文介绍了一种新方法,使用来自主衰减曲线分析的输出,以基于Lyne和Hollick单参数的信号分析滤波算法通知新算法。在爱尔兰将这种方法应用于六个集水区(包括两分钟)。每个流域的概念模型由四个主要流动路径组成:陆上流动,交流,浅地下水和深层地下水。将结果与主经济衰退曲线分析的比较,是爱尔兰和半分布,集成和确定性水文模型的充电系数方法。新算法消除了通常与滤波算法相关联的自由变量的方面,并提供估计与通过快速响应途径主导地位的流域中的水文分离结果一致的贡献的方法。这些类型的流域是由不能够在河流中提供大型基础的含水量不良的含水层。这种含水层介绍了73%的爱尔兰,确保这一新算法适用于爱尔兰大多数集水区,并且可能在国际上受到快速响应水文途径的强烈影响的集水区。版权所有(c)2013 John Wiley&Sons,Ltd。

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