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Towards displacement-based seismic design of modern unreinforced masonry structures

Beyer, Katrin  
•
Petry, Sarah  
•
Tondelli, Marco  
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2014
Perspectives on European Earthquake Engineering and Engineering Seismology

Unreinforced masonry (URM) structures are known to be rather vulnerable to seismic loading. Modern URM buildings with reinforced concrete (RC) slabs might, however, have an acceptable seismic performance for regions of low to moderate seismicity. In particular in countries of moderate seismicity it is often difficult to demonstrate the seismic safety of modern URM buildings by means of force-based design methods. Displacement-based design methods are known to lead to more realistic and less conservative results, opening up hence new opportunities for the use of structural masonry. An effective implementation of displacement-based design approaches requires reliable estimates of the structure’s force and displacement capacity. This paper contributes to this endeavour by taking a fresh look at the drift capacity of URM walls with hollow clay bricks and mortar joints of normal thickness. It discusses in particular the influence of the size of the test unit and the applied loading history and loading velocity on the drift capacities of URM walls.

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Type
book part or chapter
DOI
10.1007/978-3-319-07118-3_12
Author(s)
Beyer, Katrin  
Petry, Sarah  
Tondelli, Marco  
Paparo, Alessandro  
Date Issued

2014

Publisher

Springer

Publisher place

Heidelberg

Published in
Perspectives on European Earthquake Engineering and Engineering Seismology
ISBN of the book

978-3-319-07117-6

Start page

401

End page

428

Series title/Series vol.

Geotechnical, Geological and Earthquake Engineering; 34

Subjects

Unreinforced masonry

•

performance-based design

•

displacement-based design

•

drift capacity

Written at

EPFL

EPFL units
EESD  
Available on Infoscience
November 4, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/108165
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