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Institut für BauingenieurwesenWasserwirtschaft und Hydrosystemmodellierung
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Matta, E.; Hinkelmann, R. (2019). DSA Sachbericht (FKZ : 19F2051D; mFund Forschungsinitiative). , 1–16.
Stadler,L., Germer,K., Katerinopoulou,A., Braun,J. & Hinkelmann,R. (2009). Development of Model Concepts for Simulating Two-phase Flow in Macro-Porous Soils on Different Scales.
Matta, E.; Hinkelmann, R. (2019). DSA Erfolgskontrollbericht (FKZ : 19F2051D; mFund Forschungsinitiative). , 3–6.
Hinkelmann,R. (2008). Wasserbau..
Hinkelmann R., Stadler L., Germer K.& Braun J. (2009). Development of Model Concepts for Flow in Macro-porous Media..
Hattermann, F., Koch, H., Liersch, S., Silva, A.L., Azevedo, J.R., Selge, F., Silva, G.N.S., Matta, E., Hinkelmann, R., Fischer, P., Venohr, M. (2016). Climate and land use change impacts on the water-energy-food nexus in the arid northeast of Brazil – scenario analysis and adaptation options..
Gunkel, G., Selge, F., Keitel, J., Lima, D., Calado, S., Sobral, M., Rodriguez, M., Matta, E., Hinkelmann, R., Casper, P., Hupfer, M. (2016). The Itaparica reservoir – Aquatic ecosystem functions: Impact, vulnerability and development of an adapted management..
Stadler,L., Hinkelmann,R. & Zehe,E. (2009). Two-Phase Flow Simulation of Water Infiltration into Layered Natural Slopes Inducing Soil Deformation..
Tügel, F., Hassan, A., Wannous, M., Tröger, U. & Hinkelmann, R. (2020). Investigation of the Green-Ampt infiltration model in rainfall-runoff simulations with a robust 2D shallow water model.
Nogueira da Silva, G. M., Matta, E., Gunkel G., Hinkelmann, R., Severi, W., Sobral, M. (2016). Modelling nutrient emissions from a net-cage aquaculture system in Northeastern Brazil.
Hinkelmann,R., Stadler L., Helmig R. & Zehe E. (2009). A Double Continuum Approach for Two-phase Flow Simulation in Natural Slopes..
Molkenthin,F., Notay,V., Li,C.-Y., Hinkelmann,R. & Stadler,L. (2009). Model Integration and Coupling in a Hydroinformatics System..
Schankat,M., Hinkelmann,R.& SchlÜTer,M. (2009). DiaTrans - A New Numerical Model to Simulate Density-Dependent Flow, Transport and Reaction Processes in Subsurface Sediments Interacting with Sea Water..
Matta, E., Cominola, A., Zounemat-Kermani,M. & Hinkelmann, R. (2020). A review of recent applications of neurocomputing methods in urban hydraulics and hydrolog.
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