Computational Fluid Dynamics

  • Mechanical Engineering |
  • English

Description

Introduction – The finite difference method (FDM) – Solution of fluid flow problems using FDM with MATLAB – The finite element method (FEM) - Solution of fluid flow problems using FEM with MATLAB (PDE Tool) – The finite volume method (FVM) - Solution of fluid flow problems using FVM with MATLAB – Thermofluid problems using the FVM with FLUENT software.

Program

Bachelor Degree in Mechanical Engineering (Refrigeration & Air Conditioning Engineering)

Objectives

  • The course enables the student to study, analyze and present various problems in the field of thermofluids by the aid of various computer software.

Textbook

Data will be available soon!

Course Content

content serial Description
1Introduction to Computational Fluid Dynamics.
2The Finite Difference Method (FDM).
3The Finite Difference Method (FDM) (Cont.)
4Solution of inviscid flow problems using the FDM with MATLAB.
5Solution of viscous flow problems using the FDM with MATLAB.
6The Finite Element Method (FEM).
7Solution of fluid flow problems using the FEM with MATLAB (PDE Tool) - Quiz.
8Solution of fluid flow problems using the FEM with MATLAB (PDE Tool) (Cont.)
9The Finite Volume Method (FVM)
10Solution of fluid flow problems using the FVM with MATLAB
11Solution of fluid flow problems using the FVM with MATLAB (Cont.)
12Thermofluid problems using the software FLUENT - Quiz
13Mesh Generation using the Software Gambit.
14 Examples using the FLUENT solver.
15Examples using the FLUENT solver(Cont.)
16Final Exam.

Markets and Career

  • Generation, transmission, distribution and utilization of electrical power for public and private sectors to secure both continuous and emergency demands.
  • Electrical power feeding for civil and military marine and aviation utilities.
  • Electrical works in construction engineering.

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