Watersheds in disordered media

N. Araújo, K. J. Schrenk, H. Herrmann, J. S. Andrade, F. Kun, A. Carbone, D. Torino
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引用次数: 2

Abstract

What is the best way to divide a rugged landscape? Since ancient times, watersheds separating adjacent water systems that flow, for example, toward different seas, have been used to delimit boundaries. Interestingly, serious and even tense border disputes between countries have relied on the subtle geometrical properties of these tortuous lines. For instance, slight and even anthropogenic modifications of landscapes can produce large changes in a watershed, and the effects can be highly nonlocal. Although the watershed concept arises naturally in geomorphology, where it plays a fundamental role in water management, landslide, and flood prevention, it also has important applications in seemingly unrelated fields such as image processing and medicine. Despite the far-reaching consequences of the scaling properties on watershed-related hydrological and political issues, it was only recently that a more profound and revealing connection has been disclosed between the concept of watershed and statistical physics of disordered systems. This review initially surveys the origin and definition of a watershed line in a geomorphological framework to subsequently introduce its basic geometrical and physical properties. Results on statistical properties of watersheds obtained from artificial model landscapes generated with long-range correlations are presented and shown to be in good qualitative and quantitative agreement with real landscapes.
无序介质中的分水岭
划分崎岖地形的最佳方式是什么?自古以来,分隔相邻水系的分水岭就被用来划定边界,比如流向不同海域的水系。有趣的是,国家之间严重甚至紧张的边界争端依赖于这些曲折线条微妙的几何特性。例如,对景观的轻微甚至人为的改变可以在流域中产生巨大的变化,而且这种影响可能是高度非地方性的。虽然流域概念自然出现在地貌学中,在水管理、滑坡和防洪方面发挥着重要作用,但它在图像处理和医学等看似无关的领域也有重要的应用。尽管尺度特性对流域相关的水文和政治问题产生了深远的影响,但直到最近,流域概念与无序系统的统计物理之间才发现了更深刻和更有启示意义的联系。本文首先从地貌学的角度考察了分水岭线的起源和定义,然后介绍了分水岭线的基本几何和物理性质。本文给出了基于长程相关性的人工模型景观的流域统计特性的结果,并表明其与实际景观在定性和定量上都有很好的一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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