Abstract
In the electrical energy generation context in Colombia, the water resources represent the 64% of the potential generated according to UPME in the 2015 year; becoming into a solution to the growing energy demand and to the supply of energy in non-interconnected zones. The cross-flow turbines as Michell-Banki type, become an efficient and economically attractive choice. This paper shows the fluiddynamic performance of a laboratory's model turbine under several operating conditions. The development of this analysis is supported by the results of experimental tests, uses the computational fluid dynamics as a tool for modelling, estimate, and analyse the turbine behaviour under different operating conditions, with ANSYS-Fluent software; the computational model considers the most important geometric aspects of the turbine and the opening percentage effect of the guide blade. The water flow through the rotor is approach through a turbulence model as κ-ϵ type. The numerical study results agree satisfactorily with the turbine performance observed in the laboratory.
Cite
CITATION STYLE
Gómez, V. R., Higuita, E. A. P., & Morán, A. G. B. (2018). Computational analysis of a cross flow turbine performance. In MATEC Web of Conferences (Vol. 240). EDP Sciences. https://doi.org/10.1051/matecconf/201824003011
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