Scale-Dependent Inter-Catchment Groundwater Flow in Forested Catchments: Analysis of Multi-Catchment Water Balance Observations in Japan

IF 4.6 1区 地球科学 Q2 ENVIRONMENTAL SCIENCES Water Resources Research Pub Date : 2024-07-04 DOI:10.1029/2024wr037161
Tomoki Oda, Kenta Iwasaki, Tomohiro Egusa, Tayoko Kubota, Sho Iwagami, Shin'ichi Iida, Hiroki Momiyama, Takanori Shimizu
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Abstract

Inter-catchment groundwater flow (IGF) plays an essential role in streamflow generation and water quality in forested headwaters. Multiple factors are thought to contribute to IGF, including climate, topographical, and geological factors. However, studies have not clarified the relationships between IGF and catchment properties in the headwater catchments due to the lack of observational data at scales smaller than 100 ha. This study examined possible factors influencing IGF using random forest analysis based on annual water balance data from 152 forested catchments ranging from 0.09 to 9400 ha in Japan. The results showed that catchment scale had the greatest influence on IGF, and IGF tended to decrease with increasing catchment area at scales of less than 10 ha. The average IGF stabilized around zero in catchments greater than 10 ha. The averaged IGF trend with catchment scale indicated more outward groundwater flow in catchments smaller than 10 ha, but no relationship between IGF and catchment size in catchments larger than 10 ha. The variability in IGF decreased with catchment size and was lowest at 10–100 ha. The decrease in variability in catchments less than 100 ha was mainly due to river confluence and the increased variability in catchments larger than 100 ha indicated potential observation errors increase in catchments of this size.
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森林集水区规模相关的集水区间地下水流:日本多流域水平衡观测分析
集水区间地下水流(IGF)对森林上游的溪流生成和水质起着至关重要的作用。据认为,多种因素都会对集水间地下水流产生影响,包括气候、地形和地质因素。然而,由于缺乏小于 100 公顷尺度的观测数据,有关研究尚未阐明溪头集水区 IGF 与集水区特性之间的关系。本研究基于日本 152 个森林集水区(面积从 0.09 公顷到 9400 公顷不等)的年度水平衡数据,采用随机森林分析法研究了影响 IGF 的可能因素。结果表明,集水规模对 IGF 的影响最大,在 10 公顷以下的集水规模,IGF 有随集水面积增加而减少的趋势。在面积大于 10 公顷的集水区,平均 IGF 稳定在零附近。平均 IGF 随流域面积变化的趋势表明,在面积小于 10 公顷的流域中,地下水流向更外向,但在面积大于 10 公顷的流域中,IGF 与流域面积之间没有关系。IGF 的变异性随着集水面积的增大而减小,在 10-100 公顷时变异性最小。面积小于 100 公顷的集水区变异性降低的主要原因是河流汇合,而面积大于 100 公顷的集水区变异性增大,表明这种面积的集水区潜在的观测误差增大。
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来源期刊
Water Resources Research
Water Resources Research 环境科学-湖沼学
CiteScore
8.80
自引率
13.00%
发文量
599
审稿时长
3.5 months
期刊介绍: Water Resources Research (WRR) is an interdisciplinary journal that focuses on hydrology and water resources. It publishes original research in the natural and social sciences of water. It emphasizes the role of water in the Earth system, including physical, chemical, biological, and ecological processes in water resources research and management, including social, policy, and public health implications. It encompasses observational, experimental, theoretical, analytical, numerical, and data-driven approaches that advance the science of water and its management. Submissions are evaluated for their novelty, accuracy, significance, and broader implications of the findings.
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