Skip to main content
00:00/00:00
Lecture 1 of 50

Introduction

Download Course (Free)

Course Content

0 / 50 completed
Section 1: Introduction5 videos

Introduction

4mNow Playing

Index Notation

6m

Base Fortran90 Code

13m

Solver

10m

Driven Cavity Results

1m
Section 2: Different Boundary Conditions9 videos

Periodic Boundary Conditions

8m

Periodic Boundary Condition Results

7m

Periodic Boundary Condition Code

6m

Pressure Boundary Conditions

4m

Pressure Boundary Condition Results

7m

Pressure Boundary Condition Code

7m

Symmetry Boundary Conditions

3m

Symmetry Boundary Condition Code

7m

Symmetry Boundary Condition Results

6m
Section 3: Higher Order Interpolation of Convection Terms3 videos

Modifications to Base Code

7m

Driven Cavity Results

4m

Blended 1st Order Upwind and Second Order Central Interpolation

13m
Section 4: Unsteady Flows3 videos

Added Unsteady Terms

4m

Addition of Terms to Base Code

14m

Shedding From a Square Cylinder in a Channel

9m
Section 5: Mesh Clustering3 videos

Background Information

10m

Implementation into Base Code

9m

Channel Flow Results Using Mesh Clustering

5m
Section 6: Energy Equation6 videos

Discretization of Energy Equation

8m

Driven Cavity Results with Heat Transfer

2m

Addition to Base Code

10m

Buoyancy Using the Boussinesq Approximation

3m

Boussinesq Approximation Results

5m

Adding Boussinesq Approximation to the Code

6m
Section 7: Additional Results3 videos

Pressure Driven Flow

1m

Buoyancy Driven Flow via Heat Source

3m

Parallel Jets

1m
Section 8: Miscellaneous Topics2 videos

RedBlack Iteration Scheme for LoopLevel Parallelization

10m

RedBlack Poisson Solver with OpenMP Implementation

14m
Section 9: Collocated Variable Approach to Finite Volume Method on a Cartesian Mesh4 videos

Collocated Variable Numerical Formulation

22m

Running the Collocated Mesh Code for Driven Cavity

2m

Driven Cavity Results Using ParaView

10m

Collocated Variable Fortran Code Description

33m
Section 10: KEpsilon Turbulence Modelling12 videos

Preliminary Material

14m

ReynoldsAveraging Process

12m

Boussinesq Approximation

21m

TwoEquation kepsilon Model

16m

Viscous Sublayer and LogLaw Layer

16m

Wall Function Approach

22m

Implementation into CFD Code

7m

Running the Code

8m

Applicability of kepsilon model

4m

Channel Flow Results

3m

Commercial CFD Solvers

22m

Fortran Code For Turbulent Channel Flow

35m