Introduction to Modelling of Multiphysics Problems
The course is conducted in English in the winter semesters
at IPPT PAN in Warsaw (ul. Pawinskiego 5B).
Introductory Course on Multiphysics Modelling (ICMM)
NEW:
Lecture Notes & Slides
- Course Outline
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- Mathematical Preliminaries
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- Introduction to Partial Differential Equations
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- Exercises on Partial Differential Equations
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- Weigthed Residual Methods
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- Ritz Method
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- Introduction to Finite Element Method
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- Heat Transfer Problems
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- Galerkin Finite Element Model for Heat Transfer
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- Tutorials on Heat Transfer using COMSOL Multiphysics
- Fundamentals of Linear Elasticity
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- Tutorials on Elasticity, Thermoelasticity, and model implementation using COMSOL Multiphysics PDE Interfaces
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- Fundamentals of Piezoelectricity
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- Tutorials on Piezoelectricity using COMSOL Multiphysics
- Ideal Flow Theory and Basic Aerodynamics
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- Elementary Viscous Flow
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- Tutorials on Fluid-Structure Interaction (FSI) using COMSOL Multiphysics
- Waves in Fluids
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- Basics of Multiscale Modelling: Tutorial on Porous Media Flow using COMSOL Multiphysics
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- Fundamentals of Acoustics
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- Tutorials on Acoustics and Vibroacoustics using COMSOL Multiphysics
- Bulk and Surface Acoustic Waves in Piezoelectric Media
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- Tutorials on Piezoelectric Surface Acoustic Waves using COMSOL Multiphysics
Thematic Quiz
Quiz
- for the Introductory Course on Multiphysics Modelling (ICMM)
Course Outline
Introductory lectures:
- General mathematical preliminaries
- Basics of Partial Differential Equations (PDEs)
- types and classifications
- review of solution techniques
- review of classic PDEs
- Fundamentals of Finite Element Method (FEM)
- Weighted Residual Methods
- Ritz-Galerkin method
- the equivalence of strong and weak formulations
- various FEM issues (procedures, shape functions, etc.)
Problems to discuss:
- Heat transfer
- Linear elasticity
- Thermo-elasticity (thermo-mechanical coupling)
- Fluid dynamics (and the basics of aerodynamics)
- Waves in fluids
- Fluid-structure interaction
- Acoustics and vibroacoustics (acoustic-structure interaction)
- Piezoelectricity (electro-mechanical coupling)
- Wave propagation in anisotropic media
- Surface Acoustic Waves
- Multi-scale modelling (example: transport in porous media)
For each problem, (all or some of) the following topics will be covered:
- derivation of the governing PDE (fundamental principles and constitutive laws, primary and secondary dependent variables)
- discussion of boundary conditions (from the physical and mathematical points of view)
- derivation of the weak formulation
- the Galerkin approximation (definitions and interpretations of the coefficient matrices)
- discussion of analogies and possible couplings to other problems
Short Course (April-May 2019, October-November 2019, November-December 2021)
Brief Selective Summary
of the Short Course on Theoretical and Practical Introduction to COMSOL Multiphysics
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