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A Turbulence Model Assessment for Deep Part Load Conditions of a Francis Turbine

, , , , , and . 30th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2020), 774, page 012072. Institute of Physics, (2021)
DOI: 10.1088/1755-1315/774/1/012072

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Numerical simulations of the cavitation phenomena in a Francis turbine at deep part load conditions, and . 9th International Symposium on Cavitation (CAV2015), 656, page 012074; 1-4. (2015)Numerical investigation of the full load instability in a Francis turbine. Universität Stuttgart, Stuttgart, Dissertation, (2020)Implementation and validation of a consistent averaging method for the mixing plane interface in OpenFOAM, , , and . (2021)Modelling of the flow behaviour in the narrow-closed cutting gap during sawing with internal coolant supply, , , , , , , and . (May 2022)A Turbulence Model Assessment for Deep Part Load Conditions of a Francis Turbine, , , , , and . 30th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2020), 774, page 012072. Institute of Physics, (2021)On the Physical Mechanisms that Cause the Full Load Instability in Francis Turbines, and . 774, page 012022. (2021)Simulation of the structural behavior of a Francis runner in Deep Part Load Operation, , , , and . 30th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2020), 774, page 012143. Institute of Physics, (2021)Experimentelle und numerische Strömungsanalyse einer Trifurkation eines 150-MW-Kraftwerkes, , , , , and . WASSERWIRTSCHAFT, 109 (9): 44-47 (2019)Investigation of the Operating Principle of Diffuser Augmented Hydrokinetic Turbines, , and . 30th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2020), 774, page 012138. Institute of Physics, (2021)