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Moreover, the study shows that the differentiation between landscapes and other regional characteristics although considered essential to the successful implementation of WFD measures is very data intensive. A SDSS-based ecological-economic modelling approach for integrated river basin management on different scale levels – The project FLUMAGIS.

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Main focus was the development of an interactive tool for the assessment and (three-dimensional) visualisation of the actual state of the hydrological and landscape ecological conditions as well as of the water and matter balance of river basins. for visualization.

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  • This paper presents the results of the FLUMAGIS project, in which we developed a spatial decision support system (SDSS) to support the implementation of the European Water Framework Directive (WFD).
  • The modelling approach is based on the integration of ecological and socio-economic assessment methods, scale-specific and GIS-based data and knowledge modelling and visualization techniques.
  • We developed the prototype of a spatial decision support system (SDSS) to support the implementation of the European Water Framework Directive (WFD).
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This paper presents the results of the FLUMAGIS project, in which we developed a spatial decision support system (SDSS) to support the implementation of the European Water Framework Directive (WFD). The modelling approach is based on the integration of ecological and socio-economic assessment methods, scale-specific and GIS-based data and knowledge modelling and visualization techniques.

The project has developed an interactive tool for the assessment and (three-dimensional) visualization of the hydrological and ecological conditions in river basins and economic aspects of river basin management measures. The tool is designed to increase awareness of catchment scale hydrological and ecological issues. The paper presents the structure of the FLUMAGIS prototype and provides examples of scale-specific recommendations for management measures to improve water quality and hydrologic conditions in the Upper Ems river basin (Northwest Germany). Objective of the project was the interdisciplinary development of methods and data processing tools for planning and management of river basins (on the example of the Upper Ems River Basin).

Moreover, the study shows that the differentiation between landscapes and other regional characteristics although considered essential to the successful implementation of WFD measures is very data intensive. Spatial and planning support for the implementation of the European water framework directive (WFD) requires interdisciplinary approaches for assessment, deficit analysis, and scenario investigation. To support the implementation of the WFD, the paper presents the innovative spatial decision support system (SDSS) approach from the FLUMAGIS project which is based on the integration of methods for ecological and socio-economic assessment, scale-specific modelling, knowledge processing and techniques for visualization.

A method was developed that enables the transfer of scale-specific data and information. Analyses were performed for baseline conditions and specific management and planning scenarios to improve water quantity and quality at micro-, meso- and macro-scale. We used the models ABIMO, SWAT and NASIM as well as floodplain assessment methods. The results of the study indicate that substantial, expensive water and land management changes at different scales would be necessary to achieve the WFD water quality targets in this basin. Ecological-economic analysis of cost-effectiveness reveals that the costs of achieving certain goals of the WFD can vary more than tenfold depending on which measure is chosen out of the pool of management alternatives.

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The project has developed an interactive tool for the assessment and (three-dimensional) visualization of the hydrological and ecological conditions in river basins and economic aspects of river basin management measures. The tool is designed to increase awareness of catchment scale hydrological and ecological issues. The paper presents the structure of the FLUMAGIS prototype and provides examples of scale-specific recommendations for management measures to improve water quality and hydrologic conditions in the Upper Ems river basin (Northwest Germany). We developed the prototype of a spatial decision support system (SDSS) to support the implementation of the European Water Framework Directive (WFD). The modelling approach is based on the integration of ecological and socio-economic assessment methods, scale-specific and GIS-based data and knowledge modelling and visualization techniques.

gerd dehnhardt

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