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Chemical Engineering - Nachhaltige Chemische Technologien (Master of Science) >>

  Numerische Methoden der Thermofluiddynamik (NMTFD VO)

Dozent/in
Dr.-Ing. Manuel Münsch

Angaben
Vorlesung
Online
2 SWS, ECTS-Studium
nur Fachstudium, Sprache Englisch
Zeit: Mo 14:15 - 15:45

Studienfächer / Studienrichtungen
WPF CBI-MA 1-3 (ECTS-Credits: 7,5)
WPF CE-MA-TA-TFD 7 (ECTS-Credits: 7,5)
WPF MB-MA-FG9 1-3 (ECTS-Credits: 5)
PF MAP-S-CMP 3 (ECTS-Credits: 5)
WPF CEN-MA 1-3 (ECTS-Credits: 5)
WF LSE-MA 1-3 (ECTS-Credits: 7,5)

Voraussetzungen / Organisatorisches
Strömungsmechanik I,II

Due to corona virus precautionary measures all activities within NMTFDI:
• lecture (Monday: 14:15-15:45 o’clock)
• tutorial (Wensday: 14:15-15:45 o’clock)
• practical (Monday: 10:00-11:30 o’clock)
will take place online via Zoom or video files until further notice.

Further details will be given during the first lecture on 02.11.2020 (14:15-15:45 o’clock).
This lecture will be organized via Zoom. Please establish your own FAU account, see for example:
https://www.rrze.fau.de/medien-entwicklung/digitales-arbeiten/zoom/ https://fau.zoom.us/

Further information (especially: Link to the first Zoom lecture) and documents will be provided via the StudOn page of the NMTFDI lecture:
https://www.studon.fau.de/crs3372771.html

Please sign up as soon as possible to make sure that all updates will reach you:
https://www.studon.fau.de/crs3372771_join.html
Use NMTFD-is-fun to get access.

Inhalt
  • Governing equations and models in fluid mechanics
  • Steady problems: the Finite-Difference Method (FDM)

  • Unsteady problems: methods of time integration

  • Advection-diffusion problems

  • The Finite-Volume Method

  • Solution of the incompressible Navier-Stokes equations

  • Grids and their properties

  • Boundary conditions

The students who successfully take this module should:

  • understand the physical meaning and mathematical character of the terms in advection-diffusion equations and the Navier-Stokes equations

  • assess under what circumstances some terms in these equations can be negelcted

  • formulate a FDM for the solution of unsteady transport equations

  • asess the convergence, consistency and stability of a FDM

  • formulate a FVM for the solution of unsteady transport equations

  • know how to solve the Navier-Stokes equation with the FVM

  • implmement programs in matlab/octave to simulate fluid flow

  • assess the quality and validity of a fluid flow simulation

  • work in team and write a report describing the results and significance of a simulation

  • know the different types of grids and when to use them

Empfohlene Literatur
  • J.H. Ferziger, M. Peric, Computational Methods for Fluid Dynamics, Spinger, 2008
  • R.J. Leveque, Finite Difference Methods for Ordinary and Partial Differential Equations, SIAM, 2007

ECTS-Informationen:
Title:
Numerical Fluid Mechanics

Zusätzliche Informationen
Erwartete Teilnehmerzahl: 35

Zugeordnete Lehrveranstaltungen
PR ([online]):Numerische Methoden der Thermofluiddynamik - Praktikum
Dozentinnen/Dozenten: Dr.-Ing. Manuel Münsch, Suharto Saha, M. Sc.
Zeit: Mo 10:00 - 12:00
UE ([online]):Numerische Methoden der Thermofluiddynamik - Übung
Dozentinnen/Dozenten: Dr.-Ing. Manuel Münsch, Simon Wagner, M. Sc.
Zeit: Mi 14:15 - 15:45, 02.224 Cauerstr.9

Verwendung in folgenden UnivIS-Modulen
Startsemester SS 2020:
Schwerpunktfach Computational Material Science and Process Simulation (Compu focal)
Startsemester WS 2020/2021:
Numerische Methoden der Thermofluiddynamik (NMTFD)
Numerische Methoden der Thermofluiddynamik I (mit Praktikum) (NMTFD)

Institution: Lehrstuhl für Strömungsmechanik (LSTM)
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