Modelling of spandrel elements in URM structures with RC slabs or ring beams
Katrin Beyer, Alessandro Dazio
Abstract
Open-access reader
Katrin Beyer, Alessandro Dazio
Abstract
Open-access reader
In many unreinforced masonry (URM) buildings reinforced concrete (RC) slabs or ring beams maintain the integrity of the building when subjected to seismic loading and redistribute forces between different URM piers. In addition, RC slabs and ring beams contribute to the global stiffness and overturning capacity of the building by acting as horizontal coupling elements between URM piers. This paper reviews current design approaches concerning the consideration of the contribution of RC slabs and ring beams to the global overturning capacity of buildings with URM piers. Numerical simulations of composite spandrels consisting of RC beam and URM spandrel are performed and the results are compared with experimental evidence from own full-scale tests on composite spandrels. Finally, different wall configurations of URM buildings with RC slabs are analysed and conclusions concerning the design and analysis of such buildings drawn.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In many unreinforced masonry (URM) buildings reinforced concrete (RC) slabs or ring beams maintain the integrity of the building when subjected to seismic loading and redistribute forces between different URM piers. In addition, RC slabs and ring beams contribute to the global stiffness and overturning capacity of the building by acting as horizontal coupling elements between URM piers. This paper reviews current design approaches concerning the consideration of the contribution of RC slabs and ring beams to the global overturning capacity of buildings with URM piers. Numerical simulations of composite spandrels consisting of RC beam and URM spandrel are performed and the results are compared with experimental evidence from own full-scale tests on composite spandrels. Finally, different wall configurations of URM buildings with RC slabs are analysed and conclusions concerning the design and analysis of such buildings drawn.
Key concepts: Unreinforced masonry building, Structural engineering, Stiffness, Masonry, Beam (structure), Reinforced concrete, Geotechnical engineering, Geology