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  4. Experimental investigation of the local wave speed in a draft tube with cavitation vortex rope
 
conference paper

Experimental investigation of the local wave speed in a draft tube with cavitation vortex rope

Landry, C.
•
Favrel, A.
•
Mueller, A.
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Desy, N
•
Deschenes, C
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2014
Proceedings of the 27th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2014)
27th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2014)

Hydraulic machines operating in a wider range are subjected to cavitation developments inducing undesirable pressure pulsations which could lead to potential instability of the power plant. The occurrence of pulsating cavitation volumes in the runner and the draft tube is considered as a mass source of the system and is depending on the cavitation compliance. This dynamic parameter represents the cavitation volume variation with the respect to a variation of pressure and defines implicitly the local wave speed in the draft tube. This parameter is also decisive for an accurate prediction of system eigen frequencies. Therefore, the local wave speed in the draft tube is intrinsically linked to the eigen frequencies of the hydraulic system. Thus, if the natural frequency of a hydraulic system can be determined experimentally, it also becomes possible to estimate a local wave speed in the draft tube with a numerical model. In the present study, the reduced scale model of a Francis turbine (v=0.29) was investigated at off-design conditions. In order to measure the first eigenmode of the hydraulic test rig, an additional discharge was injected at the inlet of the hydraulic turbine at a variable frequency and amplitude to excite the system. Thus, with different pressure sensors installed on the test rig, the first eigenmode was determined Then, a hydro-acoustic test rig model was developed with the In-house EPFL SIMSEN software and the local wave speed in the draft tube was adjusted to obtain the same first eigen frequency as that measured experimentally. Finally, this method was applied for different Thoma and Froude numbers at part load conditions.

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Type
conference paper
DOI
10.1088/1755-1315/22/3/032037
Web of Science ID

WOS:000347441900095

Author(s)
Landry, C.
Favrel, A.
Mueller, A.
Nicolet, C.
Yamamoto, K.
Avellan, F.  
Editors
Desy, N
•
Deschenes, C
•
Guibault, F
•
Page, M
•
Turgeon, M
•
Giroux, Am
Date Issued

2014

Publisher

Iop Publishing Ltd

Publisher place

Bristol

Published in
Proceedings of the 27th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2014)
Total of pages

8

Series title/Series vol.

IOP Conference Series-Earth and Environmental Science; 22

Volume

22

Start page

1

End page

8

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMH  
Event nameEvent placeEvent date
27th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2014)

Montréal, Québec, Canada

September 22-26, 2014

Available on Infoscience
February 20, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/111145
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