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Dario De Domenico

Dario De Domenico

D-Index & Metrics

Engineering and Technology

D-Index
36
Citations
4755
World Ranking
8762
National Ranking
338

Overview

Dario De Domenico is affiliated with the University of Messina in Italy and specializes in research within the domain of Engineering, with a significant focus on Civil and Structural Engineering. Their work spans a variety of subfields related to structural design, vibration analysis, and materials science.

The main research topics covered by Dario De Domenico include:

  • Seismic Performance and Analysis
  • Vibration Control and Rheological Fluids
  • Structural Engineering and Vibration Analysis
  • Structural Health Monitoring Techniques
  • Structural Behavior of Reinforced Concrete
  • Structural Load-Bearing Analysis
  • Concrete Corrosion and Durability

Frequent publication venues for this scientist include:

  • Engineering Structures
  • Structures
  • Materials
  • Procedia Structural Integrity
  • Journal of Building Engineering

Dario De Domenico has collaborated extensively with colleagues such as Giuseppe Ricciardi, Antonino Recupero, Giuseppe Quaranta, Luís Filipe Almeida Bernardo, and Davide Messina.

Several recent papers authored by Dario De Domenico illustrate their research interests and contributions:

  • "Optimal design and seismic performance of tuned fluid inerter applied to structures with friction pendulum isolators" (2020), published in Soil Dynamics and Earthquake Engineering
  • "Optimal design and seismic performance of Multi-Tuned Mass Damper Inerter (MTMDI) applied to adjacent high-rise buildings" (2020), published in The Structural Design of Tall and Special Buildings
  • "Adaptive isolation system combining low-friction sliding pendulum bearings and SMA-based gap dampers" (2020), published in Engineering Structures

Additional notable work relevant to structural resilience includes:

  • "Seismic resilient design of rocking tall bridge piers using inerter-based systems" (2023), published in Engineering Structures

The research output of Dario De Domenico reflects a focused engagement with understanding and improving structural responses under dynamic and seismic loading conditions through innovative control systems and materials engineering approaches.

Best Publications

  • An enhanced base isolation system equipped with optimal tuned mass damper inerter (TMDI)

    Dario De Domenico;Giuseppe Ricciardi

  • Design strategies of viscous dampers for seismic protection of building structures: A review

    D. De Domenico;G. Ricciardi;I. Takewaki

  • Optimal design and seismic performance of tuned mass damper inerter (TMDI) for structures with nonlinear base isolation systems

    Dario De Domenico;Giuseppe Ricciardi

  • Novel fluid inerter based tuned mass dampers for optimised structural control of base-isolated buildings

    Dario De Domenico;Predaricka Deastra;Giuseppe Ricciardi;Neil D. Sims

  • Soil-dependent optimum design of a new passive vibration control system combining seismic base isolation with tuned inerter damper

    D. De Domenico;N. Impollonia;G. Ricciardi

  • Improving the dynamic performance of base-isolated structures via tuned mass damper and inerter devices: A comparative study

    Dario De Domenico;Giuseppe Ricciardi

  • Earthquake-resilient design of base isolated buildings with TMD at basement: Application to a case study

    Dario De Domenico;Giuseppe Ricciardi

  • Optimal design and seismic performance of tuned fluid inerter applied to structures with friction pendulum isolators

    Dario De Domenico;Giuseppe Ricciardi;Ruifu Zhang

  • Earthquake protection of structures with nonlinear viscous dampers optimized through an energy-based stochastic approach

    D. De Domenico;G. Ricciardi

  • Adaptive isolation system combining low-friction sliding pendulum bearings and SMA-based gap dampers

    Dario De Domenico;Emanuele Gandelli;Virginio Quaglini

  • Optimal design and seismic performance of Multi-Tuned Mass Damper Inerter (MTMDI) applied to adjacent high-rise buildings

    Dario De Domenico;Haoshuai Qiao;Qinhua Wang;Zhiwen Zhu

  • Analytical and finite element investigation on the thermo-mechanical coupled response of friction isolators under bidirectional excitation

    D. De Domenico;G. Ricciardi;G. Benzoni

  • Optimal design based on analytical solution for storage tank with inerter isolation system

    Yiyao Jiang;Zhipeng Zhao;Ruifu Zhang;Dario De Domenico

  • Seismic response control of adjacent high-rise buildings linked by the Tuned Liquid Column Damper-Inerter (TLCDI)

    Qinhua Wang;Haoshuai Qiao;Dario De Domenico;Zhiwen Zhu

  • Multi-level performance-based design optimisation of steel frames with nonlinear viscous dampers

    Dario De Domenico;Iman Hajirasouliha

  • Reliability-based design optimization of adaptive sliding base isolation system for improving seismic performance of structures

    Yongbo Peng;Yangying Ma;Tianchen Huang;Dario De Domenico

  • Confinement of reinforced concrete columns with glass fiber reinforced cementitious matrix jackets

    Flora Faleschini;Mariano Angelo Zanini;Lorenzo Hofer;Klajdi Toska

  • Integrated geophysical surveys at the archaeological site of Tindari (Sicily, Italy)

    D. De Domenico;F. Giannino;G. Leucci;C. Bottari

  • Bond behavior and ultimate capacity of notched concrete beams with externally-bonded FRP and PBO-FRCM systems under different environmental conditions

    Dario De Domenico;Santi Urso;Chiara Borsellino;Nino Spinella

  • Structural behavior of RC beams containing EAF slag as recycled aggregate: Numerical versus experimental results

    Dario De Domenico;Flora Faleschini;Carlo Pellegrino;Giuseppe Ricciardi

  • Wind-Induced Response Control of High-Rise Buildings Using Inerter-Based Vibration Absorbers

    Qinhua Wang;Haoshuai Qiao;Dario De Domenico;Zhiwen Zhu

  • Seismic performance of optimal Multi-Tuned Liquid Column Damper-Inerter (MTLCDI) applied to adjacent high-rise buildings

    Qinhua Wang;Haoshuai Qiao;Dario De Domenico;Zhiwen Zhu

  • Improved response-spectrum analysis of base-isolated buildings: A substructure-based response spectrum method

    D. De Domenico;G. Falsone;G. Ricciardi

  • Shear strength of RC beams with stirrups using an improved Eurocode 2 truss model with two variable-inclination compression struts

    Dario De Domenico;Giuseppe Ricciardi

  • A layered limit analysis of pinned-joints composite laminates: Numerical versus experimental findings

    A.A. Pisano;P. Fuschi;D. De Domenico

Frequent Co-Authors

Harm Askes
Harm Askes Maastricht University
Elias C. Aifantis
Elias C. Aifantis Aristotle University of Thessaloniki
Carlo Pellegrino
Carlo Pellegrino University of Padua
Izuru Takewaki
Izuru Takewaki Kyoto University
Enrico Tubaldi
Enrico Tubaldi University of Strathclyde
Iman Hajirasouliha
Iman Hajirasouliha University of Sheffield
Neil D. Sims
Neil D. Sims University of Sheffield
David J. Wagg
David J. Wagg University of Sheffield
Theodore L. Karavasilis
Theodore L. Karavasilis University of Patras
Giuseppe Marano
Giuseppe Marano University of Milan

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