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T

Hering,D., Birk,D., Solheim,A.L., Carvalho,L., Borja,A., Hendriksen,P., Krause-Jensen,D., Lauridsen,T., Sondergaard,M., Pont,D., Johnson,R., Kolada,A., Porst,G., Marba,N., Noges,P., Ott,I., Marques,J.C., Irvine,K. & Basset,A. (2012). Guidelines for indicator development. Technical Report, 1–22.


U

Mitra Jahanbazi and Ulrich Egger (2014). Application and comparison of two different dual drainage models to assess urban flooding. Urban Water Journal, 584-595.

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W

Ladwig, Robert and Furusato, Eiichi and Kirillin, Georgiy and Hinkelmann, Reinhard and Hupfer, Michael (2018). Climate Change Demands Adaptive Management of Urban Lakes: Model-Based Assessment of Management Scenarios for Lake Tegel (Berlin, Germany). Water

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Lewandowski, Jörg and Arnon, Shai and Banks, Eddie and Batelaan, Okke and Betterle, Andrea and Broecker, Tabea and Coll, Claudia and Drummond, Jennifer D. and Garcia, Jaime Gaona and Galloway, Jason and Gomez-Velez, Jesus and Grabowski, Robert C. and Herzog, Skuyler P. and Hinkelmann, Reinhard and Höhne, Anja and Hollender, Juliane and Horn, Marcus A. and Jaeger, Anna and Krause, Stefan and Prats, Adrian Löchner and Magliozzi, Chiara and Meinikmann, Karin and Mojarrad, Brian Babak and Mueller, Birgit Maria and Peralta-Maraver, Ignacio and Popp, Andrea L. and Posselt, Malte and Putschew, Anke and Radke, Michael and Raza, Muhammad and Riml, Joakim and Robertson, Anne and Rutere, Cyrus and Schaper, Jonas L. and Schirmer, Mario and Schulz, Hanna and Shanafield, Margaret and Singh, Tanu and Ward, Adam S. and Wolke, Philipp and Wörman, Anders and Wu, Liwen (2019). Is the Hyporheic Zone Relevant beyond the Scientific Community?. Water

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Matta, Elena; and Selge, Florian; and Gunkel, Günter; and Hinkelmann, Reinhard (2017). Three-dimensional modeling of wind- and temperature-induced flows in the Icó-Mandantes Bay, Itaparica Reservoir, NE Brazil. Water (Switzerland). Multidisciplinary Digital Publishing Institute, 772.

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Özgen, I., Zhao, J., Liang, D. & Hinkelmann, R. (2017). Wave propagation speeds and source term influence in single and integral porosity shallow water equations. Water Science and Engineering, in press.


Jia-heng Zhao and Ilhan Özgen and Dong-fang Liang and Reinhard Hinkelmann (2017). Comparison of depth-averaged concentration and bed load flux sediment transport models of dam-break flow. Water Science and Engineering, 287 - 294.

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Özgen, Ilhan and Zhao, Jia-heng and Liang, Dong-fang and Hinkelmann, Reinhard (2017). Wave propagation speeds and source term influences in single and integral porosity shallow water equations. Water Science and Engineering. Elsevier, 275–286.


Jia-heng Zhao and Ilhan Özgen and Dong-fang Liang and Reinhard Hinkelmann (2017). Comparison of depth-averaged concentration and bed load flux sediment transport models of dam-break flow. Water Science and Engineering, -.

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Özgen, Ilhan and Zhao, Jiaheng and Liang, Dongfang and Hinkelmann, Reinhard (2017). Wave propagation speeds and source term influences in single and integral porosity shallow water equations. Water Science and Engineering, 1–12.

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Hou, Jing-ming and Liang, Qiu-hua and Wang, Gang and Hinkelmann, Reinhard (2017). Preface for special section on flood modeling and resilience. Water Science and Engineering, 265–266.

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Zhao, Jia-heng and Özgen, Ilhan and Liang, Dong-fang and Hinkelmann, Reinhard (2017). Comparison of depth-averaged concentration and bed load flux sediment transport models of dam-break flow. Water Science and Engineering, 287–294.

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Matta E., Selge F., Gunkel G., Rossiter K., Jourieh A., Hinkelmann R. (2016). Simulations of nutrient emissions from a net cage aquaculture in a Brazilian bay. Water Science and Technology, 2430-2435.


Selge F., Matta E., Hinkelmann R. & Gunkel G. (2016). Nutrient load concept-reservoir vs. bay impacts: a case study from a semi-arid watershed. Water Science and Technology


Teuber, Katharina and Broecker, Tabea and Bentzen, Thomas Ruby and Stephan, Dietmar and Nützmann, Gunnar and Hinkelmann, Reinhard (2019). Using computational fluid dynamics to describe H2S mass transfer across the water–air interface in sewers. Water Science and Technology, 1934-1946.

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