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Linking hydrologic signatures to hydrologic processes: A review

机译:将水文特征与水文过程联系起来:综述

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摘要

Hydrologic signatures are metrics that quantify aspects of streamflow response. Linking signatures to underlying processes enables multiple applications, such as selecting hydrologic model structure, analysing hydrologic change, making predictions in ungauged basins, and classifying watershed function. However, many lists of hydrologic signatures are not process-based, and knowledge about signature-process links has been scattered among studies from experimental watersheds and model selection experiments. This review brings together those studies to catalogue more than 50 signatures representing evapotranspiration, snow storage and melt, permafrost, infiltration excess, saturation excess, groundwater, baseflow, connectivity, channel processes, partitioning, and human alteration. The review shows substantial variability in the number, type, and timescale of signatures available to represent each process. Many signatures provide information about groundwater storage, partitioning, and connectivity, whereas snow processes and human alteration are underrepresented. More signatures are related to the seasonal scale than the event timescale, and land surface processes (ET, snow, and overland flow) have no signatures at the event scale. There are limitations in some signatures that test for occurrence but cannot quantify processes, or are related to multiple processes, making automated analysis more difficult. This review will be valuable as a reference for hydrologists seeking to use streamflow records to investigate a particular hydrologic process or to conduct large-sample analyses of patterns in hydrologic processes.
机译:水文特征是量化流响应各方面的指标。将签名与基础过程联系起来可以实现多种应用,例如选择水文模型结构,分析水文变化,在未吞没盆地进行预测以及对流域功能进行分类。但是,许多水文签名列表不是基于过程的,关于签名-过程链接的知识已经分散在实验分水岭和模型选择实验的研究中。这篇综述汇集了这些研究,对50多个特征进行了分类,这些特征代表了蒸散量,积雪和融雪,多年冻土,渗入量过多,饱和度过剩,地下水,基流,连通性,通道过程,分区和人为改变。审查显示,可用于代表每个过程的签名的数量,类型和时间尺度存在很大差异。许多签名提供了有关地下水存储,分区和连通性的信息,而降雪过程和人为改变的代表性不足。与季节尺度相关的签名比事件时间尺度更多,并且地表过程(ET,降雪和陆地流动)在事件尺度上没有签名。在某些签名中,存在一些局限性,可以测试事件的发生但无法量化流程,或者与多个流程相关,这使得自动分析变得更加困难。该综述对于寻求使用水流记录来调查特定水文过程或对水文过程的模式进行大样本分析的水文学家而言具有参考价值。

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