基于地下水特征的水文曲线行为量化与分析。

Ground water Pub Date : 2025-04-17 DOI:10.1111/gwat.13486
Raoul A Collenteur, Martin A Vonk, Ezra Haaf
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引用次数: 0

摘要

研究水头随时间的变化是地下水水文学家的共同任务。地下水特征是数值度量或统计集合,可以量化水头水文图中观察到的行为。特征可以在许多经典水文任务中提供帮助,例如水文分类,聚类,变化检测以及模型评估,选择和校准。尽管在地下水研究中使用特征有潜在的好处,但它们的应用尚未得到彻底的探索。为了支持签名在地下水研究中的应用研究,我们从Pastas软件中引入了新的地下水签名模块。签名模块是用Python编写的,经过了充分的测试和记录,并且可以在MIT许可下作为开源软件使用。本文通过两个实例说明了如何对签名进行测试并在实际应用中得到应用。在第一个示例中,在瑞士的一个全国性监测网络中,使用签名来描述和分组监测井。在第二个例子中,特征被用来评估不同的地下水模型结构对水头的模拟效果。讨论了涉及地下水特征的未来研究机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantification and Analysis of Hydrograph Behavior Using Groundwater Signatures.

The study of hydraulic head changes over time is a common task for groundwater hydrologists. Groundwater signatures are numerical metrics, or statistical aggregates, that quantify the behavior observed in hydraulic head hydrographs. Signatures can be helpful in a number of classical hydrological tasks, such as hydrograph classification, clustering, change detection, and model evaluation, selection, and calibration. Despite the potential benefits of using signatures in groundwater studies, their application has not yet been thoroughly explored. To support research into the application of signatures in groundwater studies, we introduce the new groundwater signatures module from the Pastas software. The signatures module is written in Python, fully tested and documented, and available as open-source software under the MIT license. In this paper, it is shown how the signatures are tested and can be used in practical applications through two examples. In the first example, signatures are used to characterize and cluster monitoring wells in a nationwide monitoring network in Switzerland. In the second example, signatures are used to evaluate how well different groundwater model structures simulate the heads. Future research opportunities involving groundwater signatures are discussed.

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