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2021 | OriginalPaper | Buchkapitel

Numerical Analysis of the Mechanical Response of Anchored Wire Meshes

verfasst von : Katia Boschi, Claudio di Prisco, Luca Flessati, Nicola Mazzon

Erschienen in: Challenges and Innovations in Geomechanics

Verlag: Springer International Publishing

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Abstract

Anchored wire meshes are commonly adopted to stabilise potentially unstable slopes in granular soils. In most of the cases, this reinforcement technique is employed either as an active or a passive anchoring system. In both cases, the definition of a characteristic curve putting in relation the stabilizing force with the displacement of the soil in the “far field” is crucial. To optimize the employment of these reinforcement techniques, the authors performed a series of 3D FEM numerical analyses aimed at highlighting the interaction mechanisms developing between soil and stabilizing system. To correctly reproduce the mechanical response of the wire mesh, this latter is modelled as a membrane and the numerical analyses are performed by employing a large displacement approach. The soil mechanical behaviour is modelled by means of an elastic perfectly plastic constitutive relationship: the failure condition is described by means of the Mohr Coulomb criterion and the flow rule is assumed to be non-associated.

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Literatur
Zurück zum Zitat Boschi, K., di Prisco, C., Flessati, L., Galli, A., and Tomasin, M.: Punching tests on deformable facing structures: numerical analyses and mechanical interpretation. In: Lecture Notes in Civil Engineering, vol. 40, pp. 429–437 (2020) Boschi, K., di Prisco, C., Flessati, L., Galli, A., and Tomasin, M.: Punching tests on deformable facing structures: numerical analyses and mechanical interpretation. In: Lecture Notes in Civil Engineering, vol. 40, pp. 429–437 (2020)
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Zurück zum Zitat Galli, A., di Prisco, C.: Displacement-based design procedure for slope-stabilizing piles. Can. Geotech. J. 50, 41–53 (2013)CrossRef Galli, A., di Prisco, C.: Displacement-based design procedure for slope-stabilizing piles. Can. Geotech. J. 50, 41–53 (2013)CrossRef
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Zurück zum Zitat Panteghini, A., Lagioia, R.: A fully convex reformulation of the original Matsuoka-Nakai failure criterion and its implicit numerically efficient integration algorithm. Int. J. Numer. Anal. Meth. Geomech. 38(6), 593–614 (2014a)CrossRef Panteghini, A., Lagioia, R.: A fully convex reformulation of the original Matsuoka-Nakai failure criterion and its implicit numerically efficient integration algorithm. Int. J. Numer. Anal. Meth. Geomech. 38(6), 593–614 (2014a)CrossRef
Zurück zum Zitat Panteghini, A., Lagioia, R.: A single numerically efficient equation for approximating the Mohr-Coulomb and the Matsuoka-Nakai failure criteria with rounded edges and apex. Int. J. Numer. Anal. Meth. Geomech. 38(4), 349–369 (2014b)CrossRef Panteghini, A., Lagioia, R.: A single numerically efficient equation for approximating the Mohr-Coulomb and the Matsuoka-Nakai failure criteria with rounded edges and apex. Int. J. Numer. Anal. Meth. Geomech. 38(4), 349–369 (2014b)CrossRef
Metadaten
Titel
Numerical Analysis of the Mechanical Response of Anchored Wire Meshes
verfasst von
Katia Boschi
Claudio di Prisco
Luca Flessati
Nicola Mazzon
Copyright-Jahr
2021
DOI
https://doi.org/10.1007/978-3-030-64518-2_92