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Busse,T., Molkenthin,F. & Hinkelmann, R. (2007). A Software Concept of a Numerical Modelling System for an Adaptive Simulation of Coupled Hydrodynamic Processes. [40].


Busse,T., Simons,F., Mieth,S., Hinkelmann,R. & Molkenthin,F. (2012). HMS: A generalised software design to enhance the modelling of geospatial referenced flow and transport phenomena [41].


Broecker, T. and Schaper, J. and El-Athman, F. and Gillefalk, M. and Hilt, S. and Hinkelmann, R. (2017). Surface water - groundwater interactions [42]. 37th IAHR World Congress, Kuala Lumpur, Malaysia


Broecker, T., Özgen, I., Matta, E., Cabral, J., Candeias, A.L., Hinkelmann, R. (2014). Simulation of Flow and Transport Processes in a Brazilian Reservoir [43].


Tabea Broecker and Waldemar Elsesser and Katharina Teuber and Ilhan Özgen and Gunnar Nützmann and Reinhard Hinkelmann (2018). High-resolution simulation of free-surface flow and tracer retention over streambeds with ripples [44]. Limnologica, 46 - 58.

Link to publication [45]

Broecker,T., Gollo,V.S. & Hinkelmann,R. (2021). Integrated Navier-Stockes simulations to improve process understanding in surface water - groundwater interaction space [46].


Broecker, Tabea and Teuber, Katharina and Sobhi Gollo, Vahid and Nützmann, Gunnar and Lewandowski, Jörg and Hinkelmann, Reinhard (2019). Integral Flow Modelling Approach for Surface Water-Groundwater Interactions along a Rippled Streambed [47]. Water

Link to publication [48]

Broecker, Tabea and Sobhi Gollo, Vahid and Fox, Aryeh and Lewandowski, Jörg and Nützmann, Gunnar and Arnon, Shai and Hinkelmann, Reinhard (2021). High-Resolution Integrated Transport Model for Studying Surface Water–Groundwater Interaction [49]. Groundwater

Link to publication [50]

Broecker, T., Teuber, K., Elsesser, W. & Hinkelmann, R. (2018). Multiphase Modeling of Hydrosystems Using OpenFOAM [51]. Advances in Hydroinformatics. Springer, Singapore, 1013-1029.


Broecker,T., Teuber,K., Ladwig,R., Nützmann,G. & Hinkelmann,R. (2018). Impact of small-scale riverbed topography on stream flow and surface detention of a tracer [52].


Broecker, Tabea and Sobhi Gollo, Vahid and Fox, Aryeh and Lewandowski, Jörg and Nützmann, Gunnar Arnon, Shai and Hinkelmann, Reinhard (2020). Integral modelling approach for tracer transport in the hyporheic zone under neutral, losing and gaining streamflow conditions [53]. First International Conference on Urban Water Interfaces (UWI). [Technische Universität Berlin, Urban Water Interfaces];, 53.

Link to publication [54]

Brinkmann,M., Heinl,M. & Thorweihe, U. (1986). The Nubian Groundwater System in the North-East Africa. [55].


Brinkmann,P.J., Heinl,M. & HollÄNder,R. (1988). Grundwasserströmung im Nubischen Aquifersystem, Nordost-Afrika. [56].


Brinkmann,P.J., Heinl,M., HollÄNder,R. & Reich,G. (1987). Retrospective Simulation of Groundwater Flow and Transport in the Nubian Aquifer System. [57].


Breiting,T., Hinkelmann,R. & Helmig,R. (2003). Kopplung von hydroinformatischen Methoden und Techniken für die Simulation von Gas-Wasser-Strömungsprozessen im Untergrund. [58].


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