横跨流域的天然河流连接

IF 10 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Xiwei Guo , Anastasia Piliouras , Peirong Lin , Weiwei Yao
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引用次数: 0

摘要

地形上确定的排水边界通常包围着自然排水系统,从而消除了地表水跨排水分界的转移。在这种根深蒂固的观念下,流域间河流连接的案例被忽视或视为“地理错误”。我们首次讨论了在全球范围内可能被视为流域间河流连接的不同情景,收集了它们的发生情况,评估了它们的形成和演化过程,并量化了它们的排水和河道性质。通过将所有病例分为三个主要类别,我们证明,尽管它们相对罕见,但这些事件并非随机现象。相反,它们体现了一种相对独特的情景组合,由既定的水文地貌理论和理解所支配。报告和已知的案件被发现发展为河流海盗的中间阶段。它们也可能形成于冲积扇、内陆三角洲、支流河、砂粉河床等各种冲蚀环境中,以及在晚更新世冰川作用下的源头地形中。通过水、沉积物、营养物和物种的流域间扩散,河流的形态结果、潜在过程和环境影响的多样性突出了自然河流系统的多样性和复杂性,要求在未来的地球表面动力学评估中纳入流域间联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural fluvial connection across watersheds
Topographically defined drainage boundaries typically enclose natural drainage systems, which eradicate surface-water transfer across drainage divides. With this ingrained perception, cases of inter-watershed fluvial connection were overlooked or regarded as “geographic errors”. For the first time, we discuss different scenarios that may be viewed as inter-watershed fluvial connections in a global scale, collect their occurrences, assess the formative and evolutionary processes, and quantify their drainage and channel properties. By categorizing all cases into three primary classes, we demonstrate that, despite their relative rarity, these occurrences are not random phenomena. Instead, they embody a comparatively unique assemblage of scenarios governed by established hydrogeomorphic theories and understanding. Reported and known cases are found to develop as an intermediate stage of river piracy. They may also form in various avulsive settings, including alluvial fan, inland delta, anabranching river, and sand-silt bed river, as well as in headwater topography under the impact of Late Pleistocene glaciers. The wide variety of their morphologic outcomes, underlying processes, and environmental impacts through inter-watershed dispersal of water, sediment, nutrients, and species highlights the diversity and complexity of natural fluvial systems, calling for the inclusion of inter-watershed connections in future assessments of Earth's surface dynamics.
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来源期刊
Earth-Science Reviews
Earth-Science Reviews 地学-地球科学综合
CiteScore
21.70
自引率
5.80%
发文量
294
审稿时长
15.1 weeks
期刊介绍: Covering a much wider field than the usual specialist journals, Earth Science Reviews publishes review articles dealing with all aspects of Earth Sciences, and is an important vehicle for allowing readers to see their particular interest related to the Earth Sciences as a whole.
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