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  4. INVESTIGATION OF TURBIDITY CURRENT VENTING FOR TWO DIFFERENT RESERVOIR BED SLOPES
 
conference paper

INVESTIGATION OF TURBIDITY CURRENT VENTING FOR TWO DIFFERENT RESERVOIR BED SLOPES

Chamoun, Sabine  
•
De Cesare, Giovanni  
•
Schleiss, Anton  
Ghani, Aminuddin Ab. et al.
2017
Proceedings of the 37th IAHR World Congress
37th IAHR World Congress

Reservoirs represent an important source of energy that should be preserved and sustained. However, the lifetime of reservoirs is being reduced due to natural processes such as sedimentation. To face this problem, different sediment mitigation techniques are employed in numerous reservoirs. These techniques sometimes require the complete emptying of reservoirs. In the particular case where sedimentation is due to the presence of turbidity currents, the most adequate technique for the evacuation of sediments is by venting these currents through bottom or low-level outlets. Venting is investigated in the present work using an experimental model where turbidity currents are generated and vented under different conditions through a bottom outlet. Several measuring instruments are used to monitor the turbidity currents and two bed slopes are tested. The effect of the slope variation on the release efficiency of venting is studied. Additionally, venting is shown to induce no retrogressive erosion. Results from this research can provide useful input for reservoir operators where sedimentation occurs.

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Type
conference paper
Author(s)
Chamoun, Sabine  
De Cesare, Giovanni  
Schleiss, Anton  
Editors
Ghani, Aminuddin Ab. et al.
Date Issued

2017

Published in
Proceedings of the 37th IAHR World Congress
Start page

1014

End page

1021

Subjects

Head losses

•

Influence length

•

Orifice

•

Throttle

•

Surge tank

Note

[1157]

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PL-LCH  
Event nameEvent placeEvent date
37th IAHR World Congress

Kuala Lumpur, Malaysia

August 13-18, 2017

Available on Infoscience
September 4, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/139961
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