Internal flow characteristics in the draft tube of a Francis turbine model by air injection under low flow rate condition

Author:

Kim Seung-Jun,Cho Yong,Kim Jin-Hyuk

Abstract

Abstract Undesirable internal flow features under low flow rates in the draft tube of a Francis turbine are caused by the vortex ropes with precession. These vortex ropes cause performance degradation and increase the instability of turbine systems. The effects of anti-swirl fins on the wall of the draft tube were observed in the previous study to suppress the generation of the vortex rope. However, vortex ropes still remained near the cone of the draft tube. Thus, extra methods to suppress the vortex rope are needed. In this study, the influences of air injection were investigated from the cone of the runner to suppress the vortex rope characteristics in the draft tube of a Francis turbine model. For investigating the unsteady flow and pressure phenomena by injecting the air in the draft tube, unsteady-state Reynolds-averaged Navier–Stokes calculations were carried out with a turbulence model of a scale-adaptive simulation shear stress transport. By injecting the air into the draft tube, the hydraulic efficiency was reduced, however, the visible vortex ropes in the draft tube were suppressed. Additionally, the unsteady pressure phenomena also were reduced by injecting the air.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference17 articles.

1. Effect of Fins on the Internal Flow Characteristics in the Draft Tube of a Francis Turbine Model;Kim;Energies,2020

2. Investigation on pressure fluctuation in a Francis turbine with improvement measures;Feng;IOP Conference Series: Earth and Environmental Science,2014

3. Study of the vortex-induced pressure excitation source in a Francis turbine draft tube by particle image velocimetry;Favrel;Experiments in Fluids,2015

4. Numerical simulation of air injection in Francis turbine;Chirkov;IOP conference series: earth and environmental science,2019

5. Numerical simulation and analysis of the internal flow in a Francis turbine with air admission;Yu;IOP conference series: materials science and engineering,2015

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