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  4. Riprap Protection of Vertical-Wall and Spill-Through Bridge Abutments
 
conference paper

Riprap Protection of Vertical-Wall and Spill-Through Bridge Abutments

Cardoso, António
•
Fael, Cristina
•
Simarro, Gonzalo
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2012
Proceedings of the 2nd European IAHR Congress
2nd European IAHR Congress

Scour around bridge abutments frequently leads to the collapse of bridge superstructures. Consequently, scour countermeasures are usually designed and installed by river engineers, riprap matting being the most widespread solution. The associated design criteria must attend to two groups of failure mechanisms: i) those associated the abutment body stability, which include particle erosion, translational slide failure, modified slump and slump failure; ii) those associated with the riprap apron stability, including shear, winnowing, edge failure, bed-form undermining and river bed degradation. The work presented in this communication consists on the review of design criteria recently published by the authors to face particle erosion, shear, winnowing and edge failure mechanisms at vertical-wall and spill-trough bridge abutments, under clear water flow conditions. These are the key aspects to be faced as soon as abutments are located in flood plains, their side slopes are not too steep and pore pressure is negligible. The work is based on a large experimental campaign carried out at several facilities and allows the specification of blocs’diameter, plan layout and thickness of riprap mattresses.

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Type
conference paper
Author(s)
Cardoso, António
Fael, Cristina
Simarro, Gonzalo
Schleiss, Anton  
Date Issued

2012

Published in
Proceedings of the 2nd European IAHR Congress
Start page

B10

Subjects

Riprap Protection

•

Vertical-Wall

•

Spill-Through Bridge Abutments

Note

[852]

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
PL-LCH  
Event nameEvent placeEvent date
2nd European IAHR Congress

Munich, Allemagne

Juin 27-29, 2012

Available on Infoscience
July 29, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/84281
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