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A universal approach for drainage basins

机译:流域的通用方法

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摘要

Drainage basins are essential to Geohydrology and Biodiversity. Defining those regions in a simple, robust and efficient way is a constant challenge in Earth Science. Here, we introduce a model to delineate multiple drainage basins through an extension of the Invasion Percolation-Based Algorithm (IPBA). In order to prove the potential of our approach, we apply it to real and artificial datasets. We observe that the perimeter and area distributions of basins and anti-basins display long tails extending over several orders of magnitude and following approximately power-law behaviors. Moreover, the exponents of these power laws depend on spatial correlations and are invariant under the landscape orientation, not only for terrestrial, but lunar and martian landscapes. The terrestrial and martian results are statistically identical, which suggests that a hypothetical martian river would present similarity to the terrestrial rivers. Finally, we propose a theoretical value for the Hack’s exponent based on the fractal dimension of watersheds, γ = D/2. We measure γ = 0.54 ± 0.01 for Earth, which is close to our estimation of γ ≈ 0.55. Our study suggests that Hack’s law can have its origin purely in the maximum and minimum lines of the landscapes.
机译:流域对于地理水文学和生物多样性至关重要。以简单,强大和有效的方式定义这些区域是Earth Science不断面临的挑战。在这里,我们引入一个模型,通过基于入侵渗流算法(IPBA)的扩展来描绘多个流域。为了证明我们方法的潜力,我们将其应用于真实和人工数据集。我们观察到,盆地和反盆地的周长和面积分布显示出长尾巴,延伸超过几个数量级并遵循大约幂律行为。此外,这些幂律的指数取决于空间相关性,并且在景观方向下是不变的,不仅对于陆地景观,而且对于月球和火星景观。陆地和火星的结果在统计上是相同的,这表明假想的火星河与陆地河将具有相似性。最后,我们根据分水岭的分形维数γ= D / 2提出哈克指数的理论值。我们测量地球的γ= 0.54±0.01,接近我们对γ≈0.55的估计。我们的研究表明,哈克定律的起源可能纯粹是在景观的最大和最小线条上。

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