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Jiaheng Zhao and Ilhan textbackslash"Ozgen and Dongfang Liang and Reinhard Hinkelmann (2018). A Novel Slope Failure Operator for a Non-Equilibrium Sediment Transport Model [38]. HIC 2018. 13th International Conference on Hydroinformatics. EasyChair, 2441–2448.

Link to publication [39]

Zhao, Jiaheng (2019). Fully coupled robust shallow water flow and sediment transport model on unstructured grids [40]. Technische Universität Berlin


Zhao, J., Özgen I., Liang, D. & Hinkelmann, R. (2018). A Novel Slope Failure Operator for The Total Load Sediment Transport Model [41]. G. La Loggia, G. Freni, V.Puleo and M. De Marchis (eds.), HIC2018 (EPiCSeriesinEngineering), 2441 - 2448.


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 [42]. Water Science and Engineering, 287 - 294.

Link to publication [43]

Zhao, J. and Özgen, I. and Liang, D. and Hinkelmann, R. (2018). Improved multislope MUSCL reconstruction on unstructured grids for shallow water equations [44]. International Journal for Numerical Methods in Fluids, 401-436.

Link to publication [45]

Zhao, J. and Özgen, I. and Liang, D. and Simons, F. and Hinkelmann, R. (2016). Comparison of capacity and non-capacity sediment transport models for dam break flow over movable bed [46]. Proceedings of International Symposium on River Sedimentation. CRC, 522–527.


Zhao, J. and Özgen, I. and Liang, D. and Hinkelmann, R. (2018). A Novel Slope Failure Operator for a Non-equilibrium Sediment Transport Model [47]. HIC.


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 [48]. Water Science and Engineering, -.

Link to publication [49]

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 [50]. Water Science and Engineering, 287–294.

Link to publication [51]

Zielke,W., Markofsky,M. & Hinkelmann,R. (1991). Kraftwerk Rostock - Untersuchungen zur Einleitung der Kühlturmabflut in den Breitling. [52].


Mohammad Zounemat-Kermani and Dietmar Stephan and Matthias Barjenbruch and Reinhard Hinkelmann (2020). Ensemble data mining modeling in corrosion of concrete sewer: A comparative study of network-based (MLPNN & RBFNN) and tree-based (RF, CHAID, & CART) models [53]. Advanced Engineering Informatics, 101030.

Link to publication [54]

Mohammad Zounemat-Kermani and Okke Batelaan and Marzieh Fadaee and Reinhard Hinkelmann (2021). Ensemble machine learning paradigms in hydrology: A review [55]. Journal of Hydrology, 126266.

Link to publication [56]

Mohammad Zounemat-Kermani and Dietmar Stephan and Reinhard Hinkelmann (2019). Multivariate NARX neural network in prediction gaseous emissions within the influent chamber of wastewater treatment plants [57]. Atmospheric Pollution Research, 1812 - 1822.

Link to publication [58]

Zounemat-Kermani,M., Matta,E. & Hinkelmann,R. (2020). Anwendung von künstlichen neuronalen Netzen im Wasserbau [59]. Selbstverlag der Technischen Universität Dresden.


Mohammad Zounemat-Kermani and Marzieh Fadaee and S Adarsh and Reinhard Hinkelmann (2020). Predicting Sediment transport in sewers using integrative harmony search-ANN model and factor analysis [60]. IOP Conference Series: Earth and Environmental Science. IOP Publishing, 012004.

Link to publication [61]

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