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Hydraulic geometry of natural rivers: A review and future directions

机译:天然河流的水力几何学:回顾与未来方向

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The geomorphic relationships known as hydraulic geometry (HG) were first introduced by Leopold and Maddock in 1953, and their application remains critically important for assessing water resources the world over. The practical utility of HG for discharge monitoring, habitat studies, and understanding geomorphic change over time is unquestioned, but its elevation beyond empirically observed relationship to physical principle is not complete, despite universal acceptance of its existence. This review summarizes six decades of HG research while surveying rational, extremal, and empirical attempts to derive HG's underlying physical principles. In addition, so called non-Leopoldian forms of HG are discussed, expanding HG beyond its original construction to examine a range of research that invokes HG in novel ways. The recent discovery of at-many-stations hydraulic geometry (AMHG) is also discussed in the context of previous HG literature. Finally, some common themes linking disparate HG research communities are described in conjunction with suggestions for possible new directions for HG research in the future.
机译:Leopold和Maddock于1953年首次提出了称为水力几何学(HG)的地貌关系,它们的应用对于评估全世界的水资源仍然至关重要。 HG在排放监测,栖息地研究以及了解地貌变化随时间的实际应用方面是毋庸置疑的,但是,尽管人们普遍接受它的存在,但它的高度超出了经验观察到的与物理原理之间的关系,但并不完全。这篇综述总结了六十年来对HG的研究,同时调查了推导HG基本物理原理的理性,极端和经验性尝试。此外,还讨论了所谓的非利奥波德形式的HG,将HG扩展到其原始结构之外,以研究以新颖方式调用HG的一系列研究。在以前的HG文献的背景下,还讨论了许多工位液压几何(AMHG)的最新发现。最后,结合不同的HG研究社区描述了一些共同的主题,并为未来HG研究可能的新方向提出了建议。

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