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Avant projet MFN

General informations

2014-2015

Ingénieur (niveau M1)

Génie Energétique

Modélisation et gestion technique des systèmes énergétiques

Majeure

MAJ-GE.UE3.PROJMFN

Cours

2

20

MENANTEAU Sébastien
RUSSEIL Serge
Anglais/English
Finite volume, numerical simulation, methodology, computational fluid dynamics softwares

Pedagogic informations

Training objectives
In the end, students will have the knowledge of a numerical simulation tool for solving partial differential equations governing physical conservation laws. They will learn how to use with a rigorous approach a Computational Fluid Dynamics software to model and analyze a real problem.

Learning objectives
- Perform numerical simulations for the physical analysis of phenomena governed by differential equations
- Use a numerical simulation tool with a rigorous engineering approach
- Implement the concepts of convergence, initial conditions, relaxation, mesh, computational domain, boundary conditions
- Understand the importance of critical analysis of results and validation of simulations
- Choose to implement solutions versus the time constraints, the precision needed, etc.

Learning context
This course complements the course "Computational Fluid Dynamics." It provides the concepts necessary for the rigorous use of a numerical simulation tool for solving and analyzing real engineering problems.

Course materials
The documentation of the software is used in addition to Part B (digital simulation Methodology) of the course "Computational Fluid Dynamics".
Copy of oral presentations materials are also provided.

Prerequisites
Science Fundamentals in numerical analysis, fluid mechanics and heat transfer.
Following of the course "Computational Fluid Dynamics ".

Course content
Tutorials for geometric models definition, mesh settings.
Tutorials for solving fluid mechanics and heat transfer problems.

Personal work

Exams
Label (French) Label (English)
Avant projet MFN CFD Project

Exam description

Exam structure
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