Publication | Open Access
Numerical and experimental investigation of a cross-flow water turbine
57
Citations
31
References
2016
Year
Wind-assisted PropulsionAeroacousticsTurbulence ClosureEngineeringAerospace EngineeringTurbulenceCross-flow TurbineAerodynamicsCross-flow Water TurbineMultiphase FlowWind EngineeringGas Turbine EngineDesign CriterionFluid Machinery
A numerical and experimental study was carried out for validation of a previously proposed design criterion for a cross-flow turbine and a new semi-empirical formula linking inlet velocity to inlet pressure. An experimental test stand was designed to conduct a series of experiments and to measure the efficiency of the turbine designed based on the proposed criterion. The experimental efficiency was compared to that from numerical simulations performed using a RANS model with a shear stress transport (SST) turbulence closure. The proposed semi-empirical velocity formula was also validated against the numerical solutions for cross-flow turbines with different geometries and boundary conditions. The results confirmed the previous hydrodynamic analysis and thus can be employed in the design of the cross-flow turbines as well as for reducing the number of simulations needed to optimize the turbine geometry.
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