Computational Fluid Dynamics 1 (CFD1) [SerienID : 4082]

This cours deals with a basic introduction to the numerical simulation of fluid flow, i.e., how to obtain a numerical solution to a fluid flow problem, how to discretize the underlying equations and how to evaluate the result.

Content:

  • Governing equations and models in fluid mechanics
  • The Finite-Difference Method (FDM)

  • Unsteady problems: methods of time integration

  • The Finite-Volume Method

  • Solution of the incompressible Navier-Stokes equations

  • Grids and their properties

  • Boundary conditions

  • Compressible Flows

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

  • implemement 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

Semester

Wintersemester 2024/2025

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aktualisiert

2024-10-18 08:39:24

Abonnements

4

  • # 1
    Nur für Portal
    Lecture 01 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-10-18 Wintersemester 2024/2025
  • # 2
    Nur für Portal
    Lecture 02a - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-10-18 Wintersemester 2024/2025
  • # 3
    Nur für Portal
    Lecture 02b - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-10-18 Wintersemester 2024/2025
  • # 4
    Nur für Portal
    Lecture 03 - Computational Fluid Dynamics 1 (CFD1)
    Dr.-Ing. Manuel Münsch
    2024-10-25 Wintersemester 2024/2025
  • # 5
    Nur für Portal
    Lecture 04 - Computational Fluid Dynamics 1 (CFD1)
    Dr.-Ing. Manuel Münsch
    2024-11-04 Wintersemester 2024/2025
  • # 6
    Nur für Portal
    Lecture 05 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-11-19 Wintersemester 2024/2025
  • # 7
    Nur für Portal
    Lecture 06 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-11-09 Wintersemester 2024/2025
  • # 8
    Nur für Portal
    Lecture 07 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-11-11 Wintersemester 2024/2025
  • # 9
    Nur für Portal
    Lecture 08 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-11-18 Wintersemester 2024/2025
  • # 10
    Nur für Portal
    Lecture 09 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2024-11-21 Wintersemester 2024/2025
  • # 11
    Nur für Portal
    Lecture 10 - Computational Fluid Dynamics 1 (CFD1)
    Dr.-Ing. Manuel Münsch
    2024-12-09 Wintersemester 2024/2025
  • # 12
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    Lecture 11 - Computational Fluid Dynamics 1 (CFD1)
    Dr.-Ing. Manuel Münsch
    2024-12-16 Wintersemester 2024/2025
  • # 13
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    Lecture 12 - Computational Fluid Dynamics 1 (CFD1)
    Dr.-Ing. Manuel Münsch
    2024-12-18 Wintersemester 2024/2025
  • # 14
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    Lecture 13 - Computational Fluid Dynamics 1 (CFD1)
    Dr.-Ing. Manuel Münsch
    2025-01-20 Wintersemester 2024/2025
  • # 15
    Nur für Portal
    Lecture 14 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2025-01-21 Wintersemester 2024/2025
  • # 16
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    Lecture 15 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2025-01-27 Wintersemester 2024/2025
  • # 17
    Nur für Portal
    Lecture 16 - Computational Fluid Dynamics 1 (CFD1)
    Prof. Dr. Philipp Schlatter
    2025-02-04 Wintersemester 2024/2025