Numerical and experimental modeling of the hydrodynamics of open channel confluences with dominant tributary inflow
(2017)
- Author
- Laurent Schindfessel (UGent)
- Promoter
- Tom De Mulder (UGent)
- Organization
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-8529669
- MLA
- Schindfessel, Laurent. Numerical and Experimental Modeling of the Hydrodynamics of Open Channel Confluences with Dominant Tributary Inflow. Ghent University. Faculty of Engineering and Architecture, 2017.
- APA
- Schindfessel, L. (2017). Numerical and experimental modeling of the hydrodynamics of open channel confluences with dominant tributary inflow. Ghent University. Faculty of Engineering and Architecture, Ghent, Belgium.
- Chicago author-date
- Schindfessel, Laurent. 2017. “Numerical and Experimental Modeling of the Hydrodynamics of Open Channel Confluences with Dominant Tributary Inflow.” Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.
- Chicago author-date (all authors)
- Schindfessel, Laurent. 2017. “Numerical and Experimental Modeling of the Hydrodynamics of Open Channel Confluences with Dominant Tributary Inflow.” Ghent, Belgium: Ghent University. Faculty of Engineering and Architecture.
- Vancouver
- 1.Schindfessel L. Numerical and experimental modeling of the hydrodynamics of open channel confluences with dominant tributary inflow. [Ghent, Belgium]: Ghent University. Faculty of Engineering and Architecture; 2017.
- IEEE
- [1]L. Schindfessel, “Numerical and experimental modeling of the hydrodynamics of open channel confluences with dominant tributary inflow,” Ghent University. Faculty of Engineering and Architecture, Ghent, Belgium, 2017.
@phdthesis{8529669, author = {{Schindfessel, Laurent}}, isbn = {{9789463550284}}, language = {{eng}}, pages = {{XXIV, 223}}, publisher = {{Ghent University. Faculty of Engineering and Architecture}}, school = {{Ghent University}}, title = {{Numerical and experimental modeling of the hydrodynamics of open channel confluences with dominant tributary inflow}}, year = {{2017}}, }