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Hinkelmann,R. (2013). Hydraulic Engineering [40].

Hinkelmann,R. (2013). Environmental Hydraulics [41].

Hinkelmann,R., Barjenbruch,M., Moser,H. & Sieker,H. (2013). Wasser-Team am Institut für Bauingenieurwesen der TU Berlin [42].

Hinkelmann,R. & Zehe,E. (2013). DFG Forschergruppe 581 "Großhang": Kopplung von Strömungs- und Deformationsprozessen für die Modellierung von Großhangbewegungen [43].

Hinkelmann,R. (2013). Flow simulations in surface waters and in the subsurface, Lectures on Computational Fluid Dynamics and Applications [44].

Hinkelmann,R. (2013). Engineering Hydrology [45].

Hinkelmann,R. (2014). Flow simulations in surface waters and in the subsurface, Seminarprogramm [46].

Hinkelmann R., Stadler L., Germer K.& Braun J. (2009). Development of Model Concepts for Flow in Macro-porous Media. [47].

Hinkelmann.R., Liong,S.Y., Savic,D., Nasermoadeli,M.H., Daemrich,K.F. & Froele,P. (2014). Editorial: HIC2012 Special Issue: Understanding Changing Climate and Environment and Finding Solutions [48]. Journal of Hydroinformatics, 245-247.

Link to original publication [49]

Hinkelmannr.R., Nasermoadeli,M.H., Liong,S.Y., Savic,D., Froele,P. & Daemrich,K.F. (2012). Understanding Changing Climate and Environment and Finding Solutions. [50].

Holzbecher,E. & Heinl,M. (1995). Anisotropy and Dispersivity Effects on Saltywater Upconing. [51].

Hou, J. and Liang, Q. and Li, Z. and Wang, S. amd Hinkelmann, R. (2015). Numerical error control for second-order explicit TVD scheme with limiters in advection simulation [52]. Computers and Mathematics with Applications, 2097-2209.

Hou,J., Simons,F., Liang,Q. & Hinkelmann,R. (2014). An improved hydrostatic reconstruction method for shallow water model [53].

Hou,J., Liang,Q., Zhang,H. & Hinkelmann,R. (2015). An efficient unstructured MUSCL scheme for solving the 2D shallow water equation [54]. Environmental Modelling & Software. Elsevier, 131-152.

Jingming Hou and Run Wang and Qiuhua Liang and Zhanbin Li and Mian Song Huang and Reihnard Hinkelmann (2018). Efficient surface water flow simulation on static Cartesian grid with local refinement according to key topographic features [55]. Computers & Fluids, 117 - 134.

Link to publication [56]

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