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Inhalt des Dokuments

Publikationen

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2011

Martinez, I.A., Hinkelmann, R. & Savidis, S. (2011). Ground Water Replenishment by Fractured-Porous Subsurface Structures for Reducing Land Subsidence. [40].


Simons, F., Özgen, I. & Hinkelmann, R. (2011). High Resolution Simulation of Flow and Transport in Natural Catchment Areas [41].


Lange, C. (2011). Modellierung von Fließgewässern – Grundlagen der Modellierung sowie Erläuterung von 1D- und 2D-Verfahren. [42].


2010

Hinkelmann,R. & Zehe, E. (2010). Coupling of Flow and Deformation Processes for Modeling the Movement of Natural Slopes. [43].


MaßMann,S., Jakobs,F., Sellerhoff,F., Feldmann,J., Sieker,H., Lange,C., Om,Y. & Hinkelmann,R. (2010). Hyd³Flow - Integrierte hydrologische und hydro-numerische Modellsysteme für eine verbesserte Hochwasservorhersage. [44].


Martinez,I.A., Hinkelmann,R. & Savidis,S. (2010). Ground Water Replenishment by Fractured-Porous Subsurface Structures for Reducing Land Subsidence. [45].


Hou,J., Simons,F., Busse,T. & Hinkelmann,R. (2010). Transport Simulation in Shallow Water Flows Using Adaptive Methods [46].


Schankat,M. (2010). DiaTrans - A Multi-Component Model for Density-Driven Flow, Transport and Biochemical Reaction Processes in the Subsurface. [47].


Hinkelmann,R. & Lange,C. (2010). Hydrology and Flood Control. [48].


Omar,M., Hinkelmann,R., Barjenbruch,M. & Balla, D. (2010). Optimization of Detention Ponds Based on Numerical Flow and Transport Simulation. [49].


Martinez,I., Hinkelmann,R. & Savidis, S. (2010). Modelling Land Subsidence Processes Induced by Fast Rainwater Infiltration Through Fractures into the Unsaturated Zone. [50].


Notay,V., Li,C.-Y & Simons,F. (2010). Model Coupling by the Use of Autonomous Tensor Objects [51].


Notay,V., Li,C.-Y, Molkenthin,F., Simons, F. & Hinkelmann,R. (2010). Model Integration and Coupling in a Hydroinformatics System [52].


Notay,V., Li,C.-Y & Molkenthin,F. (2010). Model Integration and Coupling in a Hydroinformatics System. [53].


Pham Van, S. (2010). Application of Different Model Concepts for Simulation of Two-Phase Flow Processes in Porous Media with Fault Zones. [54].


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