Title :
Influence of duct geometry on Achard turbine efficiency
Author :
Georgescu, Sanda-Carmen ; Georgescu, Andrei-Mugur ; Cosoiu, Costin Ioan ; Costinas, Sorina
Author_Institution :
Hydraulics & Hydraulic Machinery Dept., Univ. “Politeh.” of Bucharest, Bucharest, Romania
Abstract :
In order to increase the efficiency of the Achard turbine, we propose a new duct geometry yielding to a shrouded Achard turbine: a turbine running within a channeling device with S-shaped vertical walls, in a free flow domain. Several Achard turbines, superposed, form towers. For such towers, the flow is almost unchanged in horizontal planes along the vertical axis, allowing thus 2D numerical modeling in a cross-section of the tower. The 2D modeling of the transient flow inside the shrouded Achard turbine with straight blades was performed with COMSOL Multiphysics. The studied case focuses on a row of two towers, placed across the water flow direction. In order to depict the influence of the duct geometry on turbine´s efficiency (power coefficient), our results were compared with other results obtained for shrouded Achard turbines running within a different type of duct: a symmetric two-foiled channeling device. Both duct geometries proved to increase the turbine efficiency with respect to the case of an isolated Achard turbine.
Keywords :
blades; boundary layers; ducts; hydraulic turbines; numerical analysis; pipe flow; 2D numerical modeling; Achard Turbine Efficiency; COMSOL Multiphysics; S-shaped vertical walls; duct geometry; free flow domain; power coefficient; shrouded Achard turbine; straight blades; symmetric two-foiled channeling device; tower cross-section; transient flow; water flow direction; Blades; Ducts; Force; Geometry; Numerical models; Poles and towers; Turbines; Achard turbine; channeling device; cross-flow current turbine; duct; shrouded turbine;
Conference_Titel :
Advanced Topics in Electrical Engineering (ATEE), 2013 8th International Symposium on
Conference_Location :
Bucharest
Print_ISBN :
978-1-4673-5979-5
DOI :
10.1109/ATEE.2013.6563475