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Notes on Limit and Nonlinear Elastic Analyses of Masonry Arches

In: Masonry Structures: Between Mechanics and Architecture

Author

Listed:
  • Danila Aita

    (Università di Genova, Dipartimento di Scienze per l’Architettura)

  • Riccardo Barsotti

    (Università di Pisa, Dipartimento di Ingegneria Civile e Industriale)

  • Stefano Bennati

    (Università di Pisa, Dipartimento di Ingegneria Civile e Industriale)

Abstract

This chapter is a critical presentation of studies over the last 10 years on the mechanical response of masonry arches and vaults. More precisely, we focus on a study of masonry arches conducted in parallel via both nonlinear elastic and limit analyses. The one-dimensional elastic model for masonry arches incorporates a simple but effective nonlinear constitutive law. In turn, collapse analysis is performed by the so-called ‘method of stability areas’, originally proposed by Durand-Claye in 1867. Rather than offering two alternative paths, the approaches may be considered complementary points of view on the same problem. A reasoned illustration of the concepts in question is furnished by the topics addressed: an analysis of the possible failure mechanisms of a pointed arch subject to its own weight; the search for explicit solutions to the equilibrium problem of a depressed arch subject to a uniformly distributed load; the study of arches of different shapes subject to their own weight and the weight of a superimposed wall.

Suggested Citation

  • Danila Aita & Riccardo Barsotti & Stefano Bennati, 2015. "Notes on Limit and Nonlinear Elastic Analyses of Masonry Arches," Springer Books, in: Danila Aita & Orietta Pedemonte & Kim Williams (ed.), Masonry Structures: Between Mechanics and Architecture, edition 1, pages 237-264, Springer.
  • Handle: RePEc:spr:sprchp:978-3-319-13003-3_9
    DOI: 10.1007/978-3-319-13003-3_9
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