5 ECTS credits
130 u studietijd

Aanbieding 1 met studiegidsnummer 4016300FNR voor alle studenten in het 2e semester met een gespecialiseerd master niveau.

Semester
2e semester
Inschrijving onder examencontract
Niet mogelijk
Beoordelingsvoet
Beoordeling (0 tot 20)
2e zittijd mogelijk
Ja
Inschrijvingsvereisten
Registration for Numerical Methods in Aerothermodynamics is allowed if one has successfully accomplished or is registered for 30 ECTS of (semi)common courses of the standard learning path of the Master in Electromechanical Engineering, AE track (Dutch program idem).
Onderwijstaal
Engels
Onder samenwerkingsakkoord
Onder interuniversitair akkoord mbt. opleiding
Faculteit
Faculteit Ingenieurswetenschappen
Verantwoordelijke vakgroep
Toegepaste Mechanica
Externe partnerinstelling(en)
Université libre de Bruxelles
Onderwijsteam
Aurélie Bellemans
Axel Coussement (titularis)
Onderdelen en contacturen
30 contacturen Hoorcollege
30 contacturen Werkcolleges, practica en oefeningen
Inhoud

Information also available at the following link: https://www.ulb.be/en/programme/2018-meca-h407

Discretization techniques: finite differences, finite volumes, finite elements, spectral methods. Elements of theory of partial differential equations: notion of characteristics, classification. Weak solutions of hyperbolic equations. Numerical methods for evolution problems: notions of consistency, stability & convergence, dissipation & dispersion, explicit & implicit time-stepping schemes. Numerical methods for equilibrium (boundary value) problems. Iterative methods for linear systems. Spatial discretization stability.

Apart from the oral lectures there are exercises sessions and projects (1 project involving implementing a numerical method in Octave/Matlab to solve a model 1D unsteady or 2D steady problem & 1 project involving using a commercial CFD package to study a practical flow problem).

Studiemateriaal
Handboek (Aanbevolen) : Computational techniques for fluid dynamics, Volume 1: Fundamental and General Techniques, C. A. J. Fletcher, Springer,, 9783540530589, 1996
Handboek (Aanbevolen) : Numerical computation of internal and external flows, Volume 1: Fundamentals of Numerical Discretization, Ch. Hirsch, John Wiley and Sons, 9780471923855, 2001
Bijkomende info

Course notes


Additional:
C. A. J. FLETCHER. Computational techniques for fluid dynamics, Vol. I, Springer, 1988.
C. HIRSCH. Numerical computation of internal and external flows, Vol. I. Butterworth-Heinemann, 2007.

Leerresultaten

Algemene competenties

Information also available at the following lin: MECA - H407. Change the language to English in the dropdown menu on top of the page.

 Aims and objectives
To bring the students in contact with the numerical techniques used to solve flow problems, and to show the physical background of these techniques.
Give the student insight in the relation between the physics of the problem and the numerical scheme that is used
Give the student the skills to allow him to independently read and understand books on Computational Fluid Dynamics (CFD)

- Competences en Exam requirements
At the end of the course, the student should be able to select an appropriate numerical method to solve a model problem and implement it. He/she should also be able to use a CFD package to solve practical flow problems possibly in the context of the design of a new product. He/she should have developed an attitude of solving flow problems in a creative way based on CFD and be aware of the innovative solutions CFD can offer. He/she should also have learned that CFD solutions are prone to different errors arising from the grid, the numerical scheme, the convergence level, etc. and therefore he/she should be critical towards his results and those of others. The student should also realize that CFD is a constantly evolving field of science and requires a life-long learning attitude to keep track of the latest developments.
The student is able to read and understand independently books on CFD.

As the outcome of the assignments the student should be able to technically report on research results and be able to function in a team.

Attitudes

Having an attitude of life-long learning as needed for the future development of his/her career.

Knowledge-oriented competences

Having in-depth knowledge and understanding of exact sciences with the specificity of their application to engineering.

Knowledge-oriented competences

Having in-depth knowledge and understanding of the advanced methods and theories to schematize and model complex problems or processes.

Knowledge-oriented competences

Having an in-depth scientific knowledge, understanding and skills in at least one of the subfields needed to design, produce, apply and maintain complex mechanical, electrical and/or energy systems.

Scientific competences

Can reformulate complex engineering problems in order to solve them (simplifying assumptions, reducing complexity).

Scientific competences

Can correctly report on research or design results in the form of a technical report or in the form of a scientific paper.

Scientific competences

Can collaborate in a (multidisciplinary) team.

Attitudes

Having a creative, problem-solving, result-driven and evidence-based attitude, aiming at innovation and applicability in industry and society.

Attitudes

Having a critical attitude towards one's own results and those of others.

Beoordelingsinformatie

De beoordeling bestaat uit volgende opdrachtcategorieën:
Examen Mondeling bepaalt 39% van het eindcijfer

Examen Schriftelijk bepaalt 26% van het eindcijfer

WPO Praktijkopdracht bepaalt 35% van het eindcijfer

Binnen de categorie Examen Mondeling dient men volgende opdrachten af te werken:

  • Oral theory exam met een wegingsfactor 1 en aldus 39% van het totale eindcijfer.

    Toelichting: Oral exam on the theory

Binnen de categorie Examen Schriftelijk dient men volgende opdrachten af te werken:

  • Written exercises exam met een wegingsfactor 1 en aldus 26% van het totale eindcijfer.

    Toelichting: written exam on exercises

Binnen de categorie WPO Praktijkopdracht dient men volgende opdrachten af te werken:

  • Projects met een wegingsfactor 1 en aldus 35% van het totale eindcijfer.

    Toelichting: and evaluation of the projects

Aanvullende info mbt evaluatie

Oral exam on the theory, written exam on exercises (65% of which 60% for oral and 40% for exercises) and evaluation of the projects (counts for 35%)

Toegestane onvoldoende
Kijk in het aanvullend OER van je faculteit na of een toegestane onvoldoende mogelijk is voor dit opleidingsonderdeel.

Academische context

Deze aanbieding maakt deel uit van de volgende studieplannen:
Master in de ingenieurswetenschappen: werktuigkunde-elektrotechniek: lucht- en ruimtevaart
Master of Electromechanical Engineering: Aeronautics (enkel aangeboden in het Engels)