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GAMeN

GAMeN

MS11 - Materials and Structures Across Scales: Modeling, Simulation, and Uncertainty Quantification

Gruppi AIMETA proponenti

GAMeN, GIMC, GMA, GAMS (mini-simposio congiunto)

Titolo

Materials and Structures Across Scales: Modeling, Simulation, and Uncertainty Quantification

Organizzatori

  • Raffaele Barretta, Università degli Studi di Napoli Federico II, Questo indirizzo email è protetto dagli spambots. È necessario abilitare JavaScript per vederlo.
  • Massimiliano Gioffrè, Università degli Studi di Perugia, Questo indirizzo email è protetto dagli spambots. È necessario abilitare JavaScript per vederlo.
  • Michele Marino, Università degli Studi di Roma Tor Vergata, Questo indirizzo email è protetto dagli spambots. È necessario abilitare JavaScript per vederlo.
  • Marco Pingaro, Sapienza Università di Roma, Questo indirizzo email è protetto dagli spambots. È necessario abilitare JavaScript per vederlo.

Descrizione

The mini-symposium aims to bring together theoretical, computational, and applied contributions devoted to the development and application of multiscale approaches and methods for the advanced modeling of materials and structures, including in the presence of
uncertainties. The focus is on the modeling and analysis of problems across different scales of observation and on the associated coupling procedures, from the micro- and nanostructural levels up to the macroscopic response, with particular reference to analytical, computational, and probabilistic homogenization techniques, micro–macro strategies (including FE² and hierarchical methods), reduced-order models, and discrete–continuum coupling approaches.

The mini-symposium welcomes contributions on multiscale localization phenomena, instabilities, damage, and fracture, as well as on scale effects and unconventional behaviors of advanced materials and structures, including nanomaterials, nanocomposites, metamaterials, and nanostructures. Particular attention is also devoted to uncertainty quantification and its integration within multiscale modeling frameworks. Special emphasis is placed on multiphysics modeling, characterization, and design of functional materials and innovative systems, also in the presence of complex couplings among mechanical, physical, structural, and probabilistic phenomena.

Aree di interesse

The objective is to foster interaction among the communities of:
  • Materials mechanics
  • Computational mechanics
  • Stochastic mechanics
  • Multiscale mechanics
by promoting interdisciplinary exchange on advanced methods for modeling, simulation, and design, with attention to both theoretical developments and emerging engineering and industrial applications.