Flow Analysis Inside a Pelton Turbine Bucket

Author:

Zoppé B.1,Pellone C.2,Maitre T.3,Leroy P.4

Affiliation:

1. Laboratoire des Ecoulements Géophysiques Industriels, B.P. 53, 38041 Grenoble Cédex 9, France

2. Centre National de la Recherche Scientifique, Grenoble, France

3. Institut National Polytechnique Grenoble, France

4. ALSTOM Power Hydro, B.P. 75, 38041 Grenoble, France

Abstract

The aim of this work is to provide a detailed experimental and numerical analysis of the flow in a fixed bucket of a Pelton turbine. The head, jet incidence, and flow rate have been varied to cover a wide range of the turbine functioning points. The experimental analysis provides measurements of pressure and torque as well as flow visualization. The numerical analysis is performed with the FLUENT code using the two-phase flow volume of fluid method. The results present a good consistency with experimental data. In particular, the pressure distribution is very well predicted for the whole range of the studied parameters. A detailed analysis of torque and thrust allows evaluating the losses due to the edge and the cutout of the bucket. These results give insight into the benefit we can expect of steady flow calculations through the optimization process of the design of Pelton turbines.

Publisher

ASME International

Subject

Mechanical Engineering

Reference20 articles.

1. Parkison, E., Garcin, H., Bissel, C., Muggli, F., and Braune, A., 2002, “Description of Pelton Flow Patterns With Computational Flow Simulations,” Symposium Hydropower, Turkey, Nov 4–7, 2002.

2. Numerical Simulation of Flows on Pelton Buckets by Particle Method: Flow on a Stationary/Rotating Flat Plate;Nakanishi

3. Custom Design of Pelton Turbine Runners by Numerical Analysis;Agarwal

4. Numerical Analysis of Free Water Sheet Flow of Pelton Buckets;Kubota

5. Effect of Free Jet Enlargement on the Bucket Flow in Pelton Turbine;Liu

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