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Order Classification of River Watershed Divides Based on Processing Digital Elevation Models

机译:基于加工数字高程模型的河流流域河流分类

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The principles and the algorithm of order classification of river watershed divides are outlined. It is shown that a formal application of any available order classification procedures for river watershed divides is not theoretically grounded as well as being impractical, because the physical mechanisms for formation of watershed divide network are different from those operating in the river network. We have formulated the basic principle of determining the watershed divides order on the basis of a serial sequence of sections constituting the travel path of an arbitrary water drop from the watershed divide to the outlet section of the basin. It is suggested that the order N should be assigned to the section of the watershed divide belonging to the full divide line of the N-order basin only if the travel path from it to the N-order stream is "full" in the topological sense, i.e. includes sections of all orders, from 1 to N. Also, we present a variant of determining the order on the basis of so-called higher-order triplets, incomplete sequences of sections of three neighboring orders along the travel path, with the higher of them determining the watershed divide order. The use of triplets is a subjective procedure of generalization that eliminates the influence of recent random erosional incisions on the forms of stable high-order watersheds. We outline the variants of the technique for identifying the network of watershed divides and calculating their orders, based on processing the digital elevation models (DEM) through the use of standard GIS ArcMap tools. Results are obtained in the form of a correlated classification of river and watershed networks which are rationally interpreted and hold promise for investigating the structure, functioning and evolution of river systems. The study revealed the existence of formation "cores" of river systems, i.e. regions within which the system reaches a higher stream order and which are bounded by watersheds of the same order.
机译:概述了河流分流河流分类的原理和算法。结果表明,对流域分裂的任何可用订单分类程序的正式应用不是理论上的基础以及不切实际,因为流域划分网络的形成的物理机制与河网中操作的物理机制不同。我们制定了在构成从流域划分的任意水滴的行进路径的序列序列的序列序列确定流域分裂顺序的基本原理。建议,只有在拓扑意义上的行驶路径为“全”时,才会将订单n分配给属于n阶盆地的全划线的全划线。 ,即包括所有订单的部分,从1到N.此外,我们介绍了在所谓的高阶三胞胎的基础上确定订单的变种,其中三个沿旅行路径的三个邻近订单的不完整序列。它们较高,从而确定流域的划分顺序。三元组的使用是概括的主观过程,消除了最近随机侵蚀切口对稳定高阶流域的形式的影响。我们概述了用于识别流域划分网络的技术的变体,并通过使用标准GIS ArcMap工具来处理数字高度模型(DEM)来计算其订单。结果是以河流和流域网络的相关分类的形式获得,这是合理解释和持有河流系统的结构,运作和演变的承诺。该研究揭示了河流系统的形成“核心”,即系统达到更高的流阶的区域,其由相同顺序的流域界定。

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