phy611 Theoretical Methods (Course overview)

phy611 Theoretical Methods (Course overview)

Institute of Physics 6 KP
Module components Semester courses Sommersemester 2017 Examination
Lecture
  • No access 5.04.4073Ü - Übungen zu Computational Fluid Dynamics I Lehrende anzeigen
    • Zeinab Gharibi
    • Shumian Zhao
    Termine anzeigen
    • Monday, 13:00 - 14:00, Weekly (from 10.04.17)

  • No access 5.04.4075Ü - Übungen zu Computational Fluid Dynamics II Lehrende anzeigen
    • Zeinab Gharibi
    • Shumian Zhao
    Termine anzeigen
    • Monday, 12:00 - 13:00, Weekly (from 10.04.17)

  • No access 5.04.4072 - Computational Fluid Dynamics I Lehrende anzeigen
    • Wilke Trei
    • Dr. Bernhard Stoevesandt
    Termine anzeigen
    • Thursday, 08:00 - 10:00, Weekly (from 06.04.17)

    Deeper understanding of the fundamental equations of fluid dynamics. Overview of numerical methods for the solution of the fundamental equations of fluid dynamics. Confrontation with complex problems in fluiddynamics. To become acquainted with different, widely used CFD models that are used to study complex problems in fluid dynamics. Ability to apply these CFD models to certain defined problems and to critically evaluate the results of numerical models. Content: CFD I: The Navier-Stokes equations, filtering / averaging of Navier- Stokes equations, introduction to numerical methods, finite- differences, finite-volume methods, linear equation systems, NS-solvers, RANS, URANS, LES, DNS, turbulent flows, incompressible flows, compressible flows, efficiency and accuracy.

  • No access 5.04.4074 - Computational Fluid Dynamics II Lehrende anzeigen
    • Dr. Bernhard Stoevesandt
    • Wilke Trei
    Termine anzeigen
    • Thursday, 10:00 - 12:00, Weekly (from 06.04.17)

    Deeper understanding of the fundamental equations of fluid dynamics. Overview of numerical methods for the solution of the fundamental equations of fluid dynamics. Confrontation with complex problems in fluiddynamics. To become acquainted with different, widely used CFD models that are used to study complex problems in fluid dynamics. Ability to apply these CFD models to certain defined problems and to critically evaluate the results of numerical models. Content: CFD II: Introduction to different CFD models, such as OpenFOAM and PALM. Application of these CFD models to defined problems from rotor aerodynamics and the atmospheric boundary layer.

  • No access 5.04.4666 - Personalized Medicine Lehrende anzeigen
    • Prof. Dr. rer. nat. Thorsten Schmidt
    Termine anzeigen
    • Friday, 12:00 - 16:00, Weekly (from 05.05.17)
    • Friday, 23.06.17, 12:00 - 16:00 o'clock
    • Friday, 30.06.17, 10:00 - 17:00 o'clock
    • Friday, 07.07.17, 12:00 - 14:00 o'clock

    2 SWS Vorlesung als Blockveranstaltung + Praktikum (Block nach Absprache) Dozent: Prof. Dr. rer. nat. Thorsten Schmidt, thorsten.schmidt1@uni-oldenburg.de

  • No access 5.04.4667 - Zemax Lehrende anzeigen
    • Prof. Dr. Walter Neu, Dipl.-Phys.
    Termine anzeigen
    • Wednesday, 15:00 - 17:00, Weekly (from 05.04.17)
    • Wednesday, 05.04.17, 15:45 - 16:45 o'clock

    lecture and project

Exercises
Hinweise zum Modul
Prerequisites

basic programming skills (matlab, python, C/C++)

Further information

Module Capacity:
unrestricted

Method of assesment

According selected course

Learning outcomes/competencies

This module aims to broaden the training of the students in theoretical methods for engineering physics by providing a solid and in-depth understanding of advanced concepts and their application through computer simulations. Depending on the course chosen, the students may strengthen their knowledge of computer physics, machine learning, signal processing, modelling and simulation, or numerical methods for differential equations. The module enables the students to develop the skills needed to link model design, numerical implementation, and physical data analysis with the interpretation of field and/or laboratory measurements.