Combustion: All Levels

Combustion: All Levels

10
4h 1m 19s
  1. Section 1

    Concept

  2. Section 2

    Non-Premixed (Eddy dissipation)

  3. Section 3

    Premixed (Eddy Dissipation)

  4. Section 4

    Premixed (Eddy Dissipation/Finite Rate)

  5. Section 5

    Premixed (Finite Rate/No TCI )

  6. Section 6

    Non-Premixed (Non-Adiabatic, Chemical Equilibrium)

  7. Section 7

    Non-premixed (Steady Diffusion Flamelet)

  8. Section 8

    Partially Premixed (Non-Adiabatic, Chemical Equilibrium)

  9. Section 9

    Partial Differential Function (PDF)

  10. Section 10

    Wet Combustion (DPM Combusting Particle)

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Combustion: All Levels — Ep 01

Non-Premixed Combustion Eddy dissipation CFD Simulation

Episode
01
Run Time
36m 29s
Published
Nov 16, 2024
Course Progress
0%
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About This Episode

Master Non-Premixed Combustion Simulation with Eddy Dissipation in ANSYS Fluent

Dive deep into advanced combustion modeling with our comprehensive episode on “Non-Premixed Combustion, Eddy Dissipation, ANSYS Fluent CFD Training”. This hands-on tutorial is the second installment of our “Combustion: All Levels” course, designed to elevate your simulation skills to professional standards.

Episode Overview

In this practical session, you’ll learn to simulate non-premixed combustion in a combustion chamber using ANSYS Fluent. We’ll guide you through the entire process, from geometry creation to result analysis, focusing on the Eddy Dissipation model for turbulence-chemistry interactions.

What You'll Learn

1. Geometry and Meshing

- Create a 2D combustion chamber model using Design Modeler - Implement structured meshing techniques with ANSYS Meshing - Optimize mesh quality for combustion simulations

2. Combustion Model Setup

- Configure the Species Transport model for non-premixed combustion - Set up the one-reaction methane-air mixture - Implement the Eddy Dissipation model for turbulence-chemistry interactions

3. Advanced Simulation Techniques

- Enable and configure the Energy Equation for temperature calculations - Set up the Standard k-epsilon model for turbulence modeling - Optimize solver settings for combustion simulations

4. Result Analysis and Visualization

- Generate and interpret temperature and velocity contours - Analyze species mass fraction distributions - Visualize and understand streamlines and secondary flows in the chamber

Simulation Methodology

Our step-by-step approach ensures you grasp every aspect of the simulation:

  • Setting up the Species Transport model for non-premixed combustion
  • Configuring the Eddy Dissipation model for accurate chemistry-turbulence interactions
  • Implementing volumetric combustion modeling
  • Optimizing mesh and solver settings for stability and accuracy

Results and Analysis

Learn to extract meaningful insights from your simulation:

  • Interpret temperature contours to verify combustion occurrence
  • Analyze velocity profiles and species distributions
  • Understand the role of secondary flows in enhancing combustion efficiency

Why This Episode is Essential

  • Gain practical experience with real-world combustion chamber design
  • Master the application of the Eddy Dissipation model in ANSYS Fluent
  • Enhance your understanding of non-premixed combustion processes
  • Develop skills applicable to various industrial combustion simulations

Who Should Watch This Episode?

This episode is perfect for:

  • Mechanical and chemical engineers focusing on combustion systems
  • CFD specialists looking to expand their combustion modeling skills
  • Researchers in thermal sciences and energy engineering
  • Graduate students pursuing advanced studies in combustion dynamics

Take Your CFD Skills to the Next Level

By completing this episode, you’ll be equipped to:

  • Simulate complex non-premixed combustion scenarios
  • Apply advanced turbulence-chemistry interaction models
  • Analyze and optimize combustion chamber designs
  • Elevate your CFD simulation capabilities in ANSYS Fluent

Don’t miss this opportunity to master Non-Premixed Combustion Simulation using the Eddy Dissipation model in ANSYS Fluent. Enroll now and ignite your expertise in advanced combustion modeling!

Download Geometry and Mesh