This paper presents a constitutive equation for masonry vaults which associates to each pair of generalized strains (?, K), where ? are the strains, K are the curvature changes of the mean surface, the pair of generalized internal forces, (N, M) with N and M being the normal forces and bending moments per unit length, respectively. The maximum modulus eccentricities surface is defined, and its main properties are proved. Subsequently, the limit analysis for masonry vaults is set forth and applied to the evaluation of the collapse load for a toroidal tunnel subjected to its own weight and an uniform load applied on the top circle. © 1999 Sage Publications, Inc.

The maximum modulus eccentricities surface for masonry vaults and limit analysis

Lucchesi M;Padovani C;Pasquinelli G;Zani N
1999

Abstract

This paper presents a constitutive equation for masonry vaults which associates to each pair of generalized strains (?, K), where ? are the strains, K are the curvature changes of the mean surface, the pair of generalized internal forces, (N, M) with N and M being the normal forces and bending moments per unit length, respectively. The maximum modulus eccentricities surface is defined, and its main properties are proved. Subsequently, the limit analysis for masonry vaults is set forth and applied to the evaluation of the collapse load for a toroidal tunnel subjected to its own weight and an uniform load applied on the top circle. © 1999 Sage Publications, Inc.
1999
Istituto di Scienza e Tecnologie dell'Informazione "Alessandro Faedo" - ISTI
Masonry vaults
Physical science and engineering
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/388651
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