Implementation of the AdH hydrodynamic model on the Włocławek Reservoir

Author:

Tutro Magdalena1ORCID,Hachaj Paweł S.1ORCID,Szlapa Monika1ORCID,Gierszewski Piotr2,Habel Michał3ORCID,Juśkiewicz Włodzimierz2ORCID,Mączka Natalia4

Affiliation:

1. Faculty of Environmental and Power Engineering Cracow University of Technology

2. Institute of Geography and Spatial Development Polish Academy of Sciences

3. Institute of Geography Kazimierz Wielki University in Bydgoszcz

4. student at Faculty of Environmental and Power Engineering Cracow University of Technology

Abstract

The variation of water velocity in an artificial dam reservoir is influenced not only by the inflow discharge, but also by the bathymetry of the reservoir and the water level at the dam. The depiction of spatially complex variations in flow velocity through a reservoir would not be possible without the use of hydrodynamic models. A reliable hydrodynamic model of the reservoir is an effective tool for predicting and analyzing changes in the reservoir geoecosystem in an age of changing climate and risk of water stress. A depth-averaged two-dimensional AdH model was used to visualize the hydrodynamics of the Włocławek Reservoir. Running the model for eight different hydrological conditions delivered consistent results and allowed to calibrate the model parameters. Additionally, it provided a way to verify the data regarding the rating curve of the Vistula River upstream the reservoir.

Publisher

Institute of Geography and Spatial Organization, Polish Academy of Sciences

Subject

General Earth and Planetary Sciences,Geography, Planning and Development,Urban Studies,Cultural Studies

Reference72 articles.

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