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An approach for assessing the physical condition of rivers at thecatchment scale

机译:一种评估特征规模河流物理条件的方法

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Contemporary approaches for assessing the condition of river systems focus primarily on biological information. Increasingly, natural resource managers are becoming interested in the physical condition of river systems. Rivers are naturally complex physical systems that change in time and space, and therefore challenge many traditional scientific approaches for assessing their character. One solution to this problem is the use of hierarchy theory which provides a graded organizational structure to interpret river complexity. However, most geomorphic characterizations of rivers fail to acknowledge the importance of the nested organisation of river systems and scale, thus often misinterpret form-process links. This study outlines a typology for a geomorphic characterization of rivers that can be used to assess their physical condition. It focuses on a specific level within the geomorphic river hierarchy. For this study, a set of criteria are outlined for developing a quantitative river classification scheme. This involves the use of fifteen geomorphic variables in a desktop based taxonomic river typing scheme. Variables are extracted from digital data, using both an automated GIS module developed specifically for such an exercise and combined with manually extracted data. These physical data are analysed using a series of multivariate analyses. The applicability of the approach is demonstrated in the Namoi catchment, NSW, at the basin scale. The physical condition of the river network is based on the community of river types and is assessed by considering the richness, composition and diversity of river types. The applicability of the approach for river management is also outlined.
机译:评估河流系统条件的当代方法主要关注生物信息。自然资源经理越来越感兴于河流系统的身体状况。河流是自然复杂的物理系统,改变时间和空间,因此挑战许多传统的科学方法来评估其性格。这个问题的一个解决方案是使用层次理论,提供分级组织结构来解释河流复杂性。然而,大多数河流的地貌特征都未能承认河流系统和规模嵌套组织的重要性,从而经常误解形式的过程链接。本研究概述了可用于评估其身体状况的河流的几何特征的类型。它侧重于地貌河水系统内的特定水平。对于本研究,概述了一种用于开发定量河流分类方案的一系列标准。这涉及在基于桌面的分类河键入方案中使用十五个几何变量。使用专门用于这种锻炼的自动化GIS模块,从数字数据中提取变量,并与手动提取的数据组合。使用一系列多变量分析来分析这些物理数据。该方法的适用性在盆地规模的Namoi集水区南威尔士州南威尔士州展示。河流网络的身体状况基于河流类型的社区,通过考虑河流类型的丰富,组成和多样性来评估。还概述了河流管理方法的适用性。

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