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Design and integration of a GIS-based data model for the regional hydrologic simulation in Meijiang watershed, China

机译:基于GIS的梅江流域区域水文模拟数据模型的设计与集成。

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This paper presents the design and integration of a GIS-based data model for the regional hydrologic simulation in the Meijiang watershed, China. Hydrologic systems (HS) require integration of data and models simulating different processes. Here, an object-oriented approach using Unified Modeling Language (UML) is introduced, which supports the development of GIS-based Geodatabase model-GeoHydro/DataBase (GH/DB). Spatial data, such as basins, stream network, and observation stations are stored in the feature classes. The time series and their attributes are included in the tables. Relationship classes are used to link associated objects. The new development within the scientific program OpenGeoSys (OGS) is the integration of GH/DB into the numerical simulations. The graphical user interface is implemented for the pre- and post-processing of the simulation. As for the case study, a regional hydrologic model is developed in the Meijiang watershed area for the understanding of water infiltration from surface into groundwater via soil layer with various time scales. The integration of databases and modeling tool represents the comprehensive hydrosystems and thus it is a useful tool to understand the different processes and interactions between the related hydrological compartments.
机译:本文提出了基于GIS的数据模型的设计和集成,用于中国梅江流域的区域水文模拟。水文系统(HS)需要集成模拟不同过程的数据和模型。在此,介绍了使用统一建模语言(UML)的面向对象的方法,该方法支持基于GIS的地理数据库模型GeoHydro / DataBase(GH / DB)的开发。空间数据(例如盆地,河流网络和观测站)存储在要素类中。表中包含时间序列及其属性。关系类用于链接关联的对象。 OpenGeoSys(OGS)科学程序中的新发展是将GH / DB集成到数值模拟中。图形用户界面用于仿真的预处理和后处理。对于案例研究,在梅江流域建立了区域水文模型,以了解水在不同时间尺度上从地表渗入土壤的过程。数据库和建模工具的集成代表了全面的水文系统,因此它是了解相关水文区室之间不同过程和相互作用的有用工具。

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