Technological features of distribution between river basins using GIS technologies (based on the example of r. Brusnytsya)

R. Bespalko, T. Hutsul
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Abstract

Formulation of the problem. The catchment area and surface runoff volume – morphometric parameters calculated from digital terrain models – are widely used in geographic information analysis of the area. They are attributed to the block of hydrological parameters, where they are basic concepts. The emergence and widespread usage of GIS tools has greatly simplified this labor-intensive process. However, the complexity of the applied algorithms forms the sensitivity of the models to the entered parameters, the values of most of which are selected by the user through numerous attempts and tests. The research methodology. The study examines the most common GIS tools from many existing ones that support hydrology tools – ArcGIS, Global Mapper, SAGA GIS, Surfer. Finding out the principles of operation of hydrological tools in different GIS environments and the applied algorithms was one of the goals, the solution of which was revealed in the process of research methodology. The same set of initial data obtained as a result of vectorization of relief elements of a fragment of a topographic map of the research territory is used for all software. The digital terrain model was prepared taking into account the requirements and features of hydrologically correct models. The initial data were checked for topological correctness. In order to determine the influence of separate DEM on the results of the boundaries, its modeling was performed in three versions – 10 × 10 m; 25 × 25 m; 50 × 50 m. According to the same algorithm in each of the GIS tools, the boundaries of the basins were selected. The obtained map metrics were entered into comparative tables, and in some cases were subject to correlation analysis. As a result of studies. The correct location and accurate plotting of the catchment areas of water bodies on the cartographic material has a decisive influence on the accuracy of determining their areas. No direct relationship was found between the effect of the DEM resolution on the results of modeling the boundaries of catchment areas. However, the resolution of the DEM affects the detail of the hydrographic network. It is established that for the same parameter ( ), there is a linear relationship between the cell size and the total length of the river network within the studied basins. Despite the study of hydrological modeling algorithms used in GIS tools, the most difficult is the special sensitivity of the models to the entered parameters. A correlation (very high level of connection) has been established, which consists in reducing the length and number of selected objects of watercourses with increasing the threshold value of the amount of runoff ( ). The scientific novelty. The obtained results are aimed at increasing the accuracy of modeling the boundaries of catchment basins and calculating the derived hydrographic parameters. They can be used to generalize hydrographic network objects within dedicated catchments and to achieve a reasonable degree of cartographic compliance and detail depending on the objectives and scope of research. The practical significance. Thus, both the resolution of the DEM and the value of the runoff threshold have a direct impact on the derived hydrographic parameters (for example, the density of the river network).
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基于GIS技术的流域间分布技术特征(以r. Brusnytsya为例)
问题的表述。流域面积和地表径流量是由数字地形模型计算得到的形态计量参数,在区域地理信息分析中被广泛应用。它们归因于水文参数块,其中它们是基本概念。GIS工具的出现和广泛使用大大简化了这一劳动密集型过程。然而,所应用算法的复杂性形成了模型对输入参数的敏感性,其中大多数参数的值是由用户通过多次尝试和测试选择的。研究方法。该研究从许多支持水文工具的现有GIS工具中检查了最常见的GIS工具- ArcGIS, Global Mapper, SAGA GIS, Surfer。找出水文工具在不同GIS环境下的工作原理及其应用算法是研究的目标之一,其解决方法在研究方法论的过程中得以揭示。所有软件都使用同一组初始数据,这些数据是对研究区域的地形图片段的地形要素进行矢量化的结果。考虑水文正确模型的要求和特点,编制了数字地形模型。检查了初始数据的拓扑正确性。为了确定分离DEM对边界结果的影响,将其建模分为3个版本:10 × 10 m;25 × 25米;50 × 50米。根据各GIS工具中相同的算法,选择流域边界。获得的地图度量被输入到比较表中,并且在某些情况下服从于相关分析。作为研究的结果。水体集水区在地图学资料上的正确定位和准确标绘,对水体集水区面积的确定精度有着决定性的影响。DEM分辨率对流域边界模拟结果的影响没有直接关系。然而,DEM的分辨率会影响水文网的细节。建立了在相同参数()下,研究流域内河网总长度与胞体大小呈线性关系。尽管研究了GIS工具中使用的水文建模算法,但最困难的是模型对输入参数的特殊敏感性。建立了一种相关性(非常高的连接水平),即随着径流量的阈值()的增加,河道选定对象的长度和数量减少()。科学的新奇。所得结果旨在提高流域边界建模的精度,并计算推导出的水文参数。它们可用于概括专用集水区内的水文网对象,并根据研究的目标和范围,达到合理程度的制图遵从性和详细程度。现实意义。因此,DEM的分辨率和径流阈值都直接影响所得的水文参数(例如河网密度)。
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