Numerical and experimental analysis of the shear capacity of interconnected concrete block walls

Authors

  • Luciane Marcela Filizola de Oliveira Engineering School of São Carlos, University of São Paulo http://orcid.org/0000-0003-0537-8435
  • Márcio Roberto Silva Corrêa Engineering School of São Carlos, University of São Paulo

Keywords:

Structural Masonry, Concrete Block, Shear Tests, Experimental Analysis, Numerical Modelling

Abstract

Predicting the behavior of interconnected masonry walls is a challenging issue, given the influence of a wide range of factors, such as the mechanical properties of the materials (blocks and mortar) and the way the walls are connected to each other. In this paper, experimental results in H-shaped walls subjected to shear at the vertical interface are introduced with a numerical representation. Concrete blocks and two types of connections (running bond and U-steel anchors) were considered in the tests. Computational modelling was carried out using the Diana® FEM software to complete the study and understand the structural behavior of the masonry panels. The influence of the bonding pattern on the experimental and numerical response was studied and good agreement between the results was found. Moreover, the numerical analysis showed that the computer models of the interconnected walls adequately represented the behavior of the physical models regarding load capacity and cracking patterns.

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Author Biographies

Luciane Marcela Filizola de Oliveira, Engineering School of São Carlos, University of São Paulo

Department of Structural Engineering

Márcio Roberto Silva Corrêa, Engineering School of São Carlos, University of São Paulo

Department of Structural Engineering

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Published

2017-06-30

How to Cite

OLIVEIRA, Luciane Marcela Filizola de; CORRÊA, Márcio Roberto Silva. Numerical and experimental analysis of the shear capacity of interconnected concrete block walls. Ambiente Construído, [S. l.], v. 17, n. 3, p. 25–37, 2017. Disponível em: https://seer.ufrgs.br/index.php/ambienteconstruido/article/view/69102. Acesso em: 3 aug. 2026.

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