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Information on didactic, research and institutional assignments on this page are certified by the University; more information, prepared by the professor, are available on the personal web page and in the curriculum vitae indicated on this webpage.
Information on professor
ProfessorDi Luzio Giovanni
QualificationAssociate professor full time
Belonging DepartmentDipartimento di Ingegneria Civile e Ambientale
Scientific-Disciplinary SectorICAR/09 - Structural Engineering
Curriculum VitaeDownload CV (94.2Kb - 08/01/2020)
OrcIDhttps://orcid.org/0000-0003-1971-8445

Contacts
Professor's office hours
DepartmentFloorOfficeDayTimetableTelephoneFaxNotes
Ingegneria Civile e AmbientaleII34ThursdayFrom 09:15
To 11:15
4278----
E-mailgiovanni.diluzio@polimi.it
Professor's personal website--

Data source: RE.PUBLIC@POLIMI - Research Publications at Politecnico di Milano

List of publications and reserach products for the year 2022 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Journal Articles
A discrete numerical model for the effects of crack healing on the behaviour of ordinary plain concrete: Implementation, calibration, and validation (Show >>)
Computational modeling of expansion and deterioration due to alkali–silica reaction: Effects of size range, size distribution, and content of reactive aggregate (Show >>)
Mechanical properties measurement and micro-damage characterization of ITZ in concrete by SEM-DIC method (Show >>)


List of publications and reserach products for the year 2021 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Contributions on scientific books
Time-dependent behaviour of concrete (Show >>)
Journal Articles
A comparison of the state of the art models for constitutive modelling of concrete (Show >>)
Computational modeling of temperature and relative humidity effects on concrete expansion due to alkali–silica reaction (Show >>)
Coupled multi-physics simulation of chloride diffusion in saturated and unsaturated concrete (Show >>)
Mechanical Responses of Steel Fiber-Reinforced Concrete after Exposure to High Temperature: Experiments and Mesoscale Discrete Modeling (Show >>)
Mesoscale Modeling of Concrete Time-Dependent Behavior (Show >>)
On the moisture migration of concrete subject to high temperature with different heating rates (Show >>)


List of publications and reserach products for the year 2020 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Journal Articles
Multiphysics Lattice Discrete Particle Model for the simulation of concrete thermal spalling (Show >>)
Nanoparticle simulations of logarithmic creep and microprestress relaxation in concrete and other disordered solids (Show >>)
Tridimensional long-term finite element analysis of reinforced concrete structures with rate-type creep approach (Show >>)


List of publications and reserach products for the year 2019 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
A Parameter-Free Multiscale Framework for the Self-Desiccation in Cementitious Materials (Show >>)
Modelling of autogenous healing for regular concrete via a discrete model (Show >>)
Multiphysics Lattice Discrete Particle Model for the Simulation of Concrete Thermal Spalling (Show >>)
Size effect for samples with blunt and sharp notches using linear cohesive crack law (Show >>)
Journal Articles
The ONIX model: a parameter-free multiscale framework for the prediction of self-desiccation in concrete (Show >>)


List of publications and reserach products for the year 2018 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
A multiscale framework for the prediction of concrete self-desiccation (Show >>)
Full Coupling Between Diffusion and Mechanical Analysis in a Discrete Computational Framework. (Show >>)
Nanoscale simulations of cement hydrates precipitation mechanisms: impact on macroscopic self-desiccation and water sorption isotherms (Show >>)
PREDICTING THE LONG-TERM PERFORMANCE OF STRUCTURES MADE WITH ADVANCED CEMENT BASED MATERIALS IN EXTREMELY AGGRESSIVE ENVIRONMENTS: CURRENT STATE OF PRACTICE AND RESEARCH NEEDS – THE APPROACH OF H2020 PROJECT RESHEALIENCE. (Show >>)
THE IMPACT OF C-S-H NANOSTRUCTURE ON AUTOGENOUS SHRINKAGE AND SORPTION ISOTHERMS (Show >>)
Journal Articles
Cohesive crack analysis of size effect for samples with blunt notches and generalized size effect curve for quasi-brittle materials (Show >>)
C–S–H gel densification: The impact of the nanoscale on self-desiccation and sorption isotherms (Show >>)
Discrete element framework for modeling tertiary creep of concrete in tension and compression (Show >>)
Numerical modeling of mechanical regain due to self-healing in cement based composites (Show >>)
manifesti v. 3.4.22 / 3.4.22
Area Servizi ICT
22/05/2022