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Featured researches published by Stefano Stacul.


Materials | 2017

Influence of Tension Stiffening on the Flexural Stiffness of Reinforced Concrete Circular Sections

Francesco Morelli; Cosimo Amico; Walter Salvatore; Nunziante Squeglia; Stefano Stacul

Within this paper, the assessment of tension stiffening effects on a reinforced concrete element with circular section subjected to axial and bending loads is presented. To this purpose, an enhancement of an analytical model already present within the actual technical literature is proposed. The accuracy of the enhanced method is assessed by comparing the experimental results carried out in past research and the numerical ones obtained by the model. Finally, a parametric study is executed in order to study the influence of axial compressive force on the flexural stiffness of reinforced concrete elements that are characterized by a circular section, comparing the secant stiffness evaluated at yielding and at maximum resistance, considering and not considering the effects of tension stiffness.


Materials | 2018

Analysis Method for Laterally Loaded Pile Groups Using an Advanced Modeling of Reinforced Concrete Sections

Stefano Stacul; Nunziante Squeglia

A Boundary Element Method (BEM) approach was developed for the analysis of pile groups. The proposed method includes: the non-linear behavior of the soil by a hyperbolic modulus reduction curve; the non-linear response of reinforced concrete pile sections, also taking into account the influence of tension stiffening; the influence of suction by increasing the stiffness of shallow portions of soil and modeled using the Modified Kovacs model; pile group shadowing effect, modeled using an approach similar to that proposed in the Strain Wedge Model for pile groups analyses. The proposed BEM method saves computational effort compared to more sophisticated codes such as VERSAT-P3D, PLAXIS 3D and FLAC-3D, and provides reliable results using input data from a standard site investigation. The reliability of this method was verified by comparing results from data from full scale and centrifuge tests on single piles and pile groups. A comparison is presented between measured and computed data on a laterally loaded fixed-head pile group composed by reinforced concrete bored piles. The results of the proposed method are shown to be in good agreement with those obtained in situ.


Applied Sciences | 2017

Laterally Loaded Single Pile Response Considering the Influence of Suction and Non-Linear Behaviour of Reinforced Concrete Sections

Stefano Stacul; Nunziante Squeglia; Francesco Morelli


Geosciences | 2018

One-Dimensional Nonlinear Seismic Response Analysis Using Strength-Controlled Constitutive Models: The Case of the Leaning Tower of Pisa’s Subsoil

Gabriele Fiorentino; Camillo Nuti; Nunziante Squeglia; Davide Lavorato; Stefano Stacul


GEOSCIENCES | 2018

Preliminary validation of a novel method for the assessment of effective stress state in partially saturated soils by cone penetration tests

Diego Carlo Lo Presti; Stefano Stacul; Claudia Meisina; Massimiliano Bordoni; Marco Bittelli


RIVISTA ITALIANA DI GEOTECNICA | 2015

The restoration of San Paolo Church in Pisa: geotechnical aspects

Nunziante Squeglia; Stefano Stacul; Elena Diddi


Archive | 2018

Low-Cost Passive System for Environmental Monitoring

Aldo Muro; Nelson Roberto Antoniosi Filho; Stefano Stacul; Diego Carlo Lo Presti


International Journal of Geotechnical Earthquake Engineering | 2018

Free-Field Seismic Response Analysis: The Piazza dei Miracoli in Pisa Case Study

Andrea Angina; Andrea Steri; Stefano Stacul; Diego Carlo Lo Presti


Computers and Geotechnics | 2018

m-PISE: A novel numerical procedure for pile installation and soil extraction. Application to the case of Leaning Tower of Pisa

Nunziante Squeglia; Stefano Stacul; Ayman A. Abed; Thomas Benz; Martino Leoni


XVII Convegno ANIDIS - L’Ingegneria Sismica in Italia | 2017

On the influence of pile discretization in single pile kinematic analysis using a boundary element method (BEM) based approach

Stefano Stacul; Nunziante Squeglia

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