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An existing 3-D geological model of 64 km2 and a 3-D hydrogeological model of 320 km2, developed at the Department of Hydrogeology and Environmental Geology, Martin Luther University, Halle (Saale), Germany, were used to understand the spatial and temporal hydrogeological heterogeneity of the area (Wollmann 2008; Gossel et al. 2009).
Monitoring network optimization using hydrogeological model is eased by prior existence of a hydrogeological model.
This hybrid model is a combination between general hydrogeological model and a hydrological model.
Figure 3 presents the conceptual hydrogeological model used to develop the numerical model.
The hydrogeological model was simulated for a period from 2005 to 2025 (21 years).
One is a hydrogeological model able to simulate the River Júcar basin and its associated aquifer.
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With the application of hydrogeological modeling, the LTM network was optimized.
Conceptual hydrogeological models should be prepared that support reliable risk assessment for all potential impact pathways.
Hydrogeological models might provide a valuable tool for this kind of resource management.
The hydrogeological modeling has been used to predict the overall attributes and scenario of ground water in the study area.
LTM network was optimized using hydrogeological modeling method individually for the Quaternary aquifer and the Tertiary aquifer.
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