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  4. Accelerometer and Pit Counting Detection of Cavitation Erosion on a Laboratory Jet and a Large Francis Turbine
 
conference paper

Accelerometer and Pit Counting Detection of Cavitation Erosion on a Laboratory Jet and a Large Francis Turbine

Bourdon, Paul
•
Simoneau, Raynald
•
Dorey, Jean-Marc
1994
17th IAHR Symposium on Hydraulic machinery and cavitation

The two techniques, vibratory monitoring and pit counting, show promising results for the prediction of prototype cavitation erosion from model tests of Francis turbines. These cavitation detection methods are compared in two set-ups at different power levels, a laboratory high velocity cavitation jet and a full scale 270 MW Francis turbine. Excellent quantitative correlations are obtained in the jet tests between erosion rate, volume pitting rate measured on polished metal surfaces of different hardness with a laser profilometer and the mean square value of forces on the eroded specimen inferred from measurements with a high frequency accelerometer on the specimen holder. On the large prototype good coherent results are also obtained but the vibratory information requires much finer analysis. In particular the varying erosive cavitation intensity with power output level is well detected by both methods. The two cavitation detection techniques exhibit great dynamic range and can prove very useful in characterizing the erosive aggressiveness of cavitating flow both in large machines and in reduced scale models.

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Type
conference paper
Author(s)
Bourdon, Paul
Simoneau, Raynald
Dorey, Jean-Marc
Date Issued

1994

Publisher

International Association For Hydraulic Research

Total of pages

599-615

Series title/Series vol.

Cavitation; 11

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMH  
Event nameEvent placeEvent date
17th IAHR Symposium on Hydraulic machinery and cavitation

Beijing, China

September 15-19, 1994

Available on Infoscience
April 30, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/146246
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