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Inhalt des Dokuments

Publikationen

BibTex-ListeAlle

J

Özgen, I., Zhao, J., Liang, D. & Hinkelmann, R. (2016). Urban flood modeling using shallow water equations with depth-dependent anisotropic porosity. Journal of Hydrology, 1165–1184.

Link zur Originalpublikation

Oezgen, Ilhan and Zhao, Jiaheng and Liang, Dongfang and Hinkelmann, Reinhard (2016). Urban flood modeling using shallow water equations with depth-dependent anisotropic porosity. Journal of Hydrology. Elsevier, 1165–1184.


Mohammad Zounemat-Kermani and Elena Matta and Andrea Cominola and Xilin Xia and Qing Zhang and Qiuhua Liang and Reinhard Hinkelmann (2020). Neurocomputing in Surface Water Hydrology and Hydraulics: A Review of Two Decades Retrospective, Current Status and Future Prospects. Journal of Hydrology, 125085.

Link zur Publikation

Jingming Hou and Tian Wang and Peng Li and Zhanbin Li and Xia Zhang and Jiaheng Zhao and Reinhard Hinkelmann (2018). An implicit friction source term treatment for overland flow simulation using shallow water flow model. Journal of Hydrology, 357 - 366.

Link zur Publikation

Matta, E. and Koch, H. and Selge, F. and Simshäuser, M.N. and Rossiter, K. and Nogueira da Silva, G. M. and Gunkel, G. and Hinkelmann, R. (2018). Modeling the impacts of climate extremes and multiple water uses to support water management in the Icó-Mandantes Bay, Northeast Brazil. Journal of Water and Climate Change (IWA Publishing). IWA.

Link zur Originalpublikation

K

Mohammad Zounemat-Kermani, Yueling Ma, Elena Matta, Dennis Meißner, Qing Zhang, Tomy-Minh Truong, Mark Rudolf Smogyvari, Irina Engelhardt, Martin Sauter, Felix Fiedler, Sergio Lucia, Andrea Cominola und Reinhard Hinkelmann (2021). Anwendungen von künstlichen neuronalen Netzen in der Wasserwirtschaft. Korrespondenz Wasserwirtschaft. DWA, 82 - 86.


L

Özgen, Ilhan and Abily, Morgan and Zhao, Jiaheng and Liang, Dongfang and Gourbesville, Philippe and Hinkelmann, Reinhard (2018). Towards district scale flood simulations using conventional and anisotropic porosity shallow water models with high-resolution topographic information. La Houille Blanche, 90-98.

Link zur Publikation

Özgen, Ilhan and Abily, Morgan and Zhao, Jiaheng and Liang, Dongfang and Gourbesville, Philippe and Hinkelmann, Reinhard (2018). Towards district scale flood simulations using conventional and anisotropic porosity shallow water models with high-resolution topographic information. La Houille Blanche, 90-98.

Link zur Publikation

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. Limnologica, 46 - 58.

Link zur Publikation

N


P

Martinez-Noguez, I. and Hinkelmann, R. (2015). Land subsidence caused by a single water extraction well and rapid water infiltration. Proceedings of the International Association of Hydrological Sciences, 33–38.

Link zur Publikation

Teuber, K., Broecker, T., Bayon, A., Nützmann, G. & Hinkelmann, R. (2019). CFD-modelling of free surface flows in closed conduits. Progress in Computational Fluid Dynamics, 368-380.


Mahgoub,M., Hinkelmann,R. & La Rocca,M. (2015). Three-dimensional non-hydrostatic simulation of gravity currents using TELEMAC3D and comparison of results to experimental data. Progress in Computational Fluid Dynamics, an International Journal, 56-67.

Link zur Publikation

R

Gunkel, Günter and Selge, Florian and Keitel, Jonas and Lima, Debora and Calado, Silvana and Sobral, Maria and Rodriguez, Maricela and Matta, Elena and Hinkelmann, Reinhard and Casper, Peter and Hupfer, Michael (2018). Water management and aquatic ecosystem services of a tropical reservoir (Itaparica, São Francisco, Brazil). Regional Environmental Change, 1–13.

Link zur Publikation

Gunkel, G., Selge, F., Keitel, J., Lima, D., Calado, S., Sobral, M., Rodriguez, M., Matta, E., Hinkelmann, R., Casper, P., Hupfer, M. (2018). Water management and aquatic ecosystem services of a tropical reservoir (Itaparica, São Francisco, Brazil). Regional Environmental Change


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