Javascript must be enabled to continue!
Characterising the in-plane seismic performance of infill masonry
View through CrossRef
Masonry infills, commonly found in frame buildings throughout Europe and other parts of the world, have performed poorly in past earthquakes, with infill damage endangering lives, causing disruption and significant monetary losses. To characterize the performance of masonry infills, commonly classified as non-structural elements, an extensive set of experimental test data is collected and examined in this work in order to develop fragility functions for the in plane performance of masonry infills. The collected data stems from testing conducted in Europe, the Middle East and the United States and includes solid and hollow clay brick or concrete block infills, constructed to be in contact within either reinforced concrete or steel framing. The results indicate that infill masonry can exhibit first signs of damage at drifts as low as 0.2% but may not suffer complete failure until drifts as high as 2.0%. Furthermore, it is shown that masonry fragility changes significantly according to the type of infill masonry. Subsequently, a short discussion is provided to highlight the potential use of the infill fragility information within non-linear analysis models of masonry infill. Finally, repair cost estimates for infills in Italy are computed using costing-manuals and are compared with cost estimates obtained through consultation with a number of Italian building contractors, with examination of both the median and dispersion in repair costs. It is anticipated that the results of this work will be particularly useful for advanced performance-based earthquake engineering assessments of buildings with masonry infill, providing new information on the in-plane fragility, repair costs and nonlinear modelling of masonry infills.
New Zealand Society for Earthquake Engineering
Title: Characterising the in-plane seismic performance of infill masonry
Description:
Masonry infills, commonly found in frame buildings throughout Europe and other parts of the world, have performed poorly in past earthquakes, with infill damage endangering lives, causing disruption and significant monetary losses.
To characterize the performance of masonry infills, commonly classified as non-structural elements, an extensive set of experimental test data is collected and examined in this work in order to develop fragility functions for the in plane performance of masonry infills.
The collected data stems from testing conducted in Europe, the Middle East and the United States and includes solid and hollow clay brick or concrete block infills, constructed to be in contact within either reinforced concrete or steel framing.
The results indicate that infill masonry can exhibit first signs of damage at drifts as low as 0.
2% but may not suffer complete failure until drifts as high as 2.
0%.
Furthermore, it is shown that masonry fragility changes significantly according to the type of infill masonry.
Subsequently, a short discussion is provided to highlight the potential use of the infill fragility information within non-linear analysis models of masonry infill.
Finally, repair cost estimates for infills in Italy are computed using costing-manuals and are compared with cost estimates obtained through consultation with a number of Italian building contractors, with examination of both the median and dispersion in repair costs.
It is anticipated that the results of this work will be particularly useful for advanced performance-based earthquake engineering assessments of buildings with masonry infill, providing new information on the in-plane fragility, repair costs and nonlinear modelling of masonry infills.
Related Results
Improvement of seismic performance of ordinary reinforced partially grouted concrete masonry shear walls
Improvement of seismic performance of ordinary reinforced partially grouted concrete masonry shear walls
Reinforced masonry constitutes about 10% of all low-rise construction in the US. Most of these structures are commercial and school buildings. It may also be used for multi-story h...
Screening Criteria for Infill Drillingin Water Flood Operations
Screening Criteria for Infill Drillingin Water Flood Operations
Abstract
Based on experience of drilling 10,000 vertical and 1,000 horizontal infill wells in various waterflood operations in the Western Canadian Sedimentary Ba...
Seismic vulnerability analysis of reinforced concrete frame with infill wall considering in-plane and out-of-plane interactions
Seismic vulnerability analysis of reinforced concrete frame with infill wall considering in-plane and out-of-plane interactions
The seismic performance of a building hinges on the seismic capacity and damage features of the reinforced concrete (RC) frame with masonry infill walls. To reasonably evaluate the...
Optimization of Infill Development in a Highly Heterogeneous Giant Offshore Carbonate Reservoir
Optimization of Infill Development in a Highly Heterogeneous Giant Offshore Carbonate Reservoir
Abstract
The subject field is a highly heterogeneous giant offshore reservoir. Current field development is predicated upon line drive water injection with 1 km spac...
Numerical Modeling Approach for Progressive Collapse Analysis of Infilled RC Frames
Numerical Modeling Approach for Progressive Collapse Analysis of Infilled RC Frames
Most design codes treat masonry infill walls as non - structural elements, and in the analysis of steel or reinforced concrete (RC) frame structures, their presence is often neglec...
R/C frame–infill interaction model and its application to Indonesian buildings
R/C frame–infill interaction model and its application to Indonesian buildings
SummaryThis paper proposes a new analytical model for masonry‐infilled R/C frames to evaluate the seismic performance considering R/C frame–infill interactions. The proposed analyt...
Seismic Performance of Multistorey RC Frame With Various Masonary Infill Bricks
Seismic Performance of Multistorey RC Frame With Various Masonary Infill Bricks
Brick is the most commonly used material for building construction. In India it is common use to construct reinforced concrete buildings with unreinforced infill. Infill panels hav...
Analytical Study on Lateral Strength of Multi-Span RC Frame with Masonry Infill
Analytical Study on Lateral Strength of Multi-Span RC Frame with Masonry Infill
Abstract
A simple and accurate analytical model for defining the lateral strength of the multi-span RC frame with masonry infill has been developed in this study....

