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APPLICATION OF GEOGRAPHIC INFORMATION SYSTEM (GIS) HYDROLOGIC DATA MODELS TO KARST TERRAIN

机译:地理信息系统(GIS)水文数据模型在喀斯特地区的应用

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Hydrologic data models (HDMs) are GIS-based digital representations of surface drainage networks that are being increasingly applied to address complex water-resources management and protection issues in a variety of topographic and hydrologic settings. However, the application of HDMs to karst terrain is problematic and has not received much prior attention. Using results obtained in a pilot study, this paper discusses the major difficulties and steps involved in creating a HDM capable of incorporating surface and subsurface drainage characteristics of a conduit-dominated karst basin. These include acquiring the necessary geospatial datasets, and the HDM processing techniques used to digitally represent karst features such as internally drained catchments (sinkholes or sinking streams), subsurface conduit flow paths, and temporally-spatially variable flow. A modeling approach is described that uses a combination of manual and automated terrain and HDM processing methods to create an aggregated polygon-and-vector drainage network. The drainage network links internally drained sinkhole catchments, dye-tracer-input sites, and sinking streams (inputs) to karst springs or surface streams (outputs) by way of tracer-inferred flow paths (throughputs). The resulting karst HDM is an effective digital representation of the physical hydrologic framework typical of many well-developed karst basins. Although data input and processing requirements are intensive, and some practical and technical limitations exist, karst HDMs have potential as a valuable new GIS tool, aiding the assessment, management, and protection of karst water resources.
机译:水文数据模型(HDM)是基于GIS的地面排水网络的数字表示形式,其越来越多地用于解决各种地形和水文环境中复杂的水资源管理和保护问题。但是,HDM在岩溶地形中的应用存在问题,并且尚未引起人们的广泛关注。利用在一项初步研究中获得的结果,本文讨论了创建HDM所涉及的主要困难和步骤,该HDM能够结合以导管为主的喀斯特盆地的地表和地下排水特征。这些措施包括获取必要的地理空间数据集,以及用于数字化表示岩溶特征的HDM处理技术,例如内部流失的集水区(污水坑或下沉的河流),地下管道的流动路径和时空变化的流动。描述了一种建模方法,该方法使用手动和自动地形以及HDM处理方法的组合来创建聚合的多边形和矢量排水网络。排水网络通过示踪剂推断的流动路径(吞吐量)将内部排水的集水坑集水区,染料示踪剂输入部位和下沉流(输入)连接到岩溶泉或地表流(输出)。由此产生的岩溶HDM是许多发达岩溶盆地典型的物理水文框架的有效数字表示。尽管数据输入和处理要求非常严格,并且存在一些实际和技术上的限制,但是岩溶HDM具有作为有价值的新GIS工具的潜力,可帮助评估,管理和保护岩溶水资源。

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