Course detail
CFD for Aerospace
FSI-OCF-AAcad. year: 2023/2024
Introduction, historical background. Algorithms of CFD problems solution. Mathematical model - governing equations. Finite difference method and finite volumes method - formulation and theory. Discretization. Numerical solution of systems of algebraic equations. Turbulence modelling, compressible flows and other particular advanced models. Practical guidelines to solutions of engineering problem in area of aerospace external aerodynamics.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Offered to foreign students
Entry knowledge
Rules for evaluation and completion of the course
Student have to solve all problems presented at exercises. If presence at exercises is less then 50 % student has to compensate missed exercises individually.
Aims
Student will gain knowledge about numerical approach to solution of Navier-Stokes equations, practical implementation of CFD codes, about methodical approach to simulation model preparation and practical solution of concrete particular flows. Also industrial standards for computational fluid dynamics problems simulations is presented.
Study aids
Prerequisites and corequisites
Basic literature
Tu, J., Yeoh, G., H., Liu, Ch., Computational Fluid Dynamics - A practical approach, Butterworth-Heineman, ISBN 978-0-7506-8563-4
Recommended reading
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
Algorithm of CFD solution.
Mathematical apparatus of CFD.
Finite volume method.
Turbulence modelling.
Discretization.
Numerical solution of algebraic equations system.
Practical approach to simulation - industry perspective.
Parallelization.
Compressible flows.
Computer-assisted exercise
Teacher / Lecturer
Syllabus
Grid generation.
CFD code solution.
Postprocessing - qualitative and quantitative data assessment.
Report.
E-learning texts
L-1 Introduction to CFD.pdf 0.76 MB
Numerical Methods (Jacobi and Gauss-Seidel methods) Mohamed Abdelkader.pptx 0.61 MB