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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
ProfessorCremonesi Massimiliano
QualificationAssociate professor full time
Belonging DepartmentDipartimento di Ingegneria Civile e Ambientale
Scientific-Disciplinary SectorICAR/08 - Structural Mechanics
Curriculum VitaeDownload CV (45.26Kb - 25/02/2020)
OrcIDhttps://orcid.org/0000-0001-7885-029X

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Professor's office hours
DepartmentFloorOfficeDayTimetableTelephoneFaxNotes
Ingegneria Civile ed Ambientale - Edificio 422.34--From :
To :
02.2399.6230--Si prega di telefonare o inviare una mail per fissare un appuntamento.
E-mailmassimiliano.cremonesi@polimi.it
Professor's personal websitehttp://cremonesi.faculty.polimi.it

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

List of publications and reserach products for the year 2023 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Journal Articles
A Hu–Washizu variational approach to self-stabilized virtual elements: 2D linear elastostatics (Show >>)


List of publications and reserach products for the year 2022 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
A numerical model of 3D concrete printing (Show >>)
Journal Articles
A Lagrangian fluid–structure interaction approach for the simulation of airbag deployment (Show >>)
An Arbitrary Lagrangian Eulerian Approach for Estimating Energy Dissipation in Micromirrors (Show >>)
Design of glass containers for submarine carbon storage (Show >>)
Pipeline flotation in liquefied sand: A simplified transient model (Show >>)


List of publications and reserach products for the year 2021 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Abstract in Atti di convegno
3D interaction between Lagrangian fluids and highly deformable structures (Show >>)
Numerical simulation of Vajont disaster using the Particle Finite Element Method (Show >>)
Numerical simulation of water waves generated by landslides impact. Application to Vajont disaster (Show >>)
Conference proceedings
A Lagrangian approach for fluid-structure interaction via particle finite element (PFEM) modeling (Show >>)
Journal Articles
Consistent implicit time integration for viscoplastic modeling of subsidence above hydrocarbon reservoirs (Show >>)


List of publications and reserach products for the year 2020 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
A numerical study on explicit vs implicit time integration of the Vermeer-Neher constitutive model (Show >>)
Journal Articles
3D simulation of Vajont disaster. Part 1: Numerical formulation and validation (Show >>)
3D simulation of Vajont disaster. Part 2: Multi-failure scenarios (Show >>)
A Lagrangian nodal integration method for free-surface fluid flows (Show >>)
A State of the Art Review of the Particle Finite Element Method (PFEM) (Show >>)
CFD-Based Framework for Analysis of Soil–Pipeline Interaction in Reconsolidating Liquefied Sand (Show >>)
Lagrangian--Eulerian enforcement of non-homogeneous boundary conditions in the Particle Finite Element Method (Show >>)


List of publications and reserach products for the year 2019 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Abstract in Atti di convegno
A Particle Finite Element Method with Nodal Integration for free-surface fluid flows (Show >>)
A fully-explicit Lagrangian Finite Element Approach for the simulation of 3D fluid-structure interaction problems (Show >>)
A three-dimensional Lagrangian fully explicit approach for fluid-structure interaction problems (Show >>)
Conference proceedings
A CFD approach for the flotation analysis of pipelines in liquefied sand (Show >>)
Application of the Particle Finite Element Method (PFEM) to the numerical simulation of landslides (Show >>)
Journal Articles
3D regularized μ(I)-rheology for granular flows simulation (Show >>)
An efficient runtime mesh smoothing technique for 3D explicit Lagrangian free-surface fluid flow simulations (Show >>)
On the rheological characterisation of liquefied sands through the dam-breaking test (Show >>)
manifesti v. 3.5.7 / 3.5.7
Area Servizi ICT
06/06/2023