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Published in: Archive of Applied Mechanics 8/2019

07-03-2019 | Original

The effect of vertical ground movement on masonry walls simulated through an elastic–plastic interphase meso-model: a case study

Author: Antonino Spada

Published in: Archive of Applied Mechanics | Issue 8/2019

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Abstract

The present paper proposes an interphase model for the simulation of damage propagation in masonry walls in the framework of a mesoscopic approach. The model is thermodynamically consistent, with constitutive relations derived from a Helmholtz free potential energy. With respect to classic interface elements, the internal stress contribute is added to the contact stresses. It is considered that damage, in the form of loss of adhesion or cohesion, can potentially take place at each of the two blocks–mortar physical interfaces. Flow rules are obtained in the framework of the Theory of Plasticity, considering bilinear domains of ‘Coulomb with tension cut-off’ type. The model aims to be a first research step to solve the inverse problem of damage propagation in masonry generated by vertical ground movements, in order to ex-post identify the cause of a visible damage. The constitutive model is written in a discrete form for its implementation in a research-oriented finite element program. The response at the quadrature point is analyzed first. Then, the model is validated through comparisons with experimental results and finally employed to simulate the failure occurred in a wall of an ancient masonry building, where an arched collapse took place due to a lowering of the ground level under part of its foundation.

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Metadata
Title
The effect of vertical ground movement on masonry walls simulated through an elastic–plastic interphase meso-model: a case study
Author
Antonino Spada
Publication date
07-03-2019
Publisher
Springer Berlin Heidelberg
Published in
Archive of Applied Mechanics / Issue 8/2019
Print ISSN: 0939-1533
Electronic ISSN: 1432-0681
DOI
https://doi.org/10.1007/s00419-019-01535-y

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