MUL2 RESEARCH GROUP WEB SITE
MUL2 RESEARCH GROUP AT A GLANCE
CARRERA UNIFIED FORMULATION
Refined one-, two- and three-dimensional models can be derived using a compact, unified formulation.
COMPOSITES
Advanced structural models are able to predict complex stress field, a step forward in the composite materials analysis
MULTIFIELD ANALYSIS
Fully-coupled multifield analyses including: piezoelectric and magnetostrictive materials, thermal and moisture effetcs
AEROELASTICITY AND FLUID-STRUCTURE INTERACTION
Development of advanced aeroelastic models for static and dynamic aeroelastic analyses of wings, panels and rotating blades
AIRCRAFT AND SPACECRAFT DESIGN
Refined structural moldes for the analysis of complex structures
ROTOR-DYNAMICS
Refined one-dimensional models can be a valuable alternative to three-dimensional models in the analysis of rotating blades, discs and shafts
BIOMECHANICS
Refined computational models, based on CUF, have been used in the solution of classical bio-mechanical problems
DISSEMINATION
Our work can be found in hundreds of scientific papers and in many books
BEST THEORY DIAGRAMS
The BTD is a tool to edit an arbitrarily given theory to get a lower number of terms for a given error or to increase the accuracy while keeping the computational costs constant.

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Tommaso Cavallo is an Aerospace Engineer working at Politecnico di Torino. He earned a BSc in Aerospace Engineering at Politecnico di Torino in March 2010. Afterwards he attended a MSc in the same university in October 2013, presenting a thesis on static and dynamic analysis of stiffened structures using higher order one-dimensional models. T.Cavallo started working at Politecnico di Torino in November 2013 under the supervision of Prof. Erasmo Carrera; his research project is related to the development of advanced structural models, computational aeroelasticity and nonlinear problems.

 

PhD student at Politecnico di Torino
Aerospace Engineering Department
Corso Duca degli Abruzzi, 24
10129 Torino, Italy
Tel: +39 - 011 5646869
Fax: +39 - 011 0906899
e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.

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