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Injection CFD Simulation Training Course: 11 Projects by ANSYS Fluent

$299.00 $149.50 Student Discount

  • Learn essential DPM techniques with surface injection and 2D airfoil jet simulations
  • Model industrial applications including color spraying, fuel injection, and spray dynamics
  • Analyze high-pressure diesel injection performance and penetration length characteristics
  • Optimize time-step selection for accurate particle tracking in combustion chambers
  • Validate your simulations against published research on ultra-high pressure diesel sprays
  • Explore specialized applications from nanoparticle injection to supercavitation rocket technology
  • Apply your skills to biomedical engineering with asthma inhaler spray modeling
Click on Add To Cart and obtain the Geometry file, Mesh file, and a Comprehensive ANSYS Fluent Training Video.

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Injection Jet on 2D Airfoil, CFD Simulation

  • The present CFD Project simulates air flow over NACA 0018 airfoil via ANSYS Fluent software.
  • We modeled the geometry using Space Claim software and created the mesh using ANSYS Meshing software.
  • The mesh type is unstructured, and the number of cells  is 101535.
  • We perform this simulation as pressure based.

Color Spraying on the Wall with Conical Injection

In this project, color spraying on the wall has been simulated and the results of this simulation have been investigated.

Asthma Spray Inhaler Injection Into the Lung, Ansys Fluent Training

  • The problem numerically simulates Asthma Spray Inhaler Injection Into the Lung using ANSYS Fluent software.
  • We design the 3-D model by the Design Modeler software.
  • We Mesh the model by ANSYS Meshing software, and the element number equals 3734234.
  • We perform this simulation as unsteady (Transient).
  • We use the Discrete Phase Model (DPM) to define Asthma spray injection into the lung.

 

Surface injection using DPM CFD Simulation

  • The problem numerically simulates the Surface Injection using ANSYS Fluent software.
  • We design the 3-D model by the Design Modeler and mesh the model with ANSYS ICEM software.
  • The mesh type is Structured, and the element number equals 92,809.
  • We perform this simulation as unsteady (Transient).
  • The Discrete Phase Model (DPM) model defines the particle's movement.

Time Step Size effect on Particle Injection in Combustion Chamber, ANSYS Fluent CFD Simulation Tutorial

  • The current CFD project simulates the injection of solid particles as fuel inside the combustion chamber via ANSYS Fluent software.
  • We have designed the geometry using ANSYS Design modeler software and created the mesh on this geometry using ANSYS meshing software. The mesh type is Polyhedra with 859,934 cells.
  • The Discrete Phase Model (DPM) determines the particle's movement.

Spray CFD Simulation using Injection in DPM

  • The problem numerically simulates the process of water spray into a cubic space using ANSYS Fluent software.
  • We design the 3-D model with the Design Modeler software.
  • We mesh the model with ANSYS Meshing software, and the element number equals 25464.
  • We perform this simulation as unsteady (Transient).
  • We use the Discrete Phase Model (DPM) model to define a spray process.

Fuel Injection inside a Chamber 2-D CFD Simulation

In this project, Injection inside a 2D Chamber with DPM has been simulated, and the results of this simulation have been investigated.

Nanoparticle Injection (Cone-Type) , ANSYS Fluent CFD Simulation

  • This report details a nanoparticle simulation conducted using ANSYS Fluent
  • The simulation geometry consists of a rectangular cuboid created in SpaceClaim
  • . Meshing was performed in ANSYS Meshing, resulting in a grid of 151,294 triangular cells
  • Discrete Phase Model (DPM) activated, Flow and turbulence equations deactivated

VA-111 Shkval Rocket Performance Comparative Study with and without Supercavitation injection

  • This problem simulates a VA-111 Shkval rocket using ANSYS Fluent software.
  • The geometry is designed in SpaceClaim, and the meshing is performed using Fluent Meshing; the element number equals 257,000 polyhedral cells.
  • The simulation uses the Pressure-based and VOF Multiphase model to define a two-phase flow.
  • The turbulence model is set to SST k-ω.

Diesel Injection At High Pressure, Penetration Length Analysis

  • The project focuses on simulating diesel injection at high pressure under varying environmental pressures.
  • The primary objectives are to analyze the diesel spray's penetration length
  • The simulation employs a two-way Discrete Phase Model (DPM) to capture the interaction between the diesel droplets and the surrounding air
  • the geometry of the diesel injector and combustion chamber was created in  SpaceClaim, and The mesh was generated using ANSYS Meshing. The final mesh comprises 1,250,256 cells, balancing computational accuracy and efficiency.

Diesel Spray Ultra-High Injection, Paper Numerical Validation, ANSYS Fluent Tutorial

  • The problem numerically simulates Diesel Spray Ultra-High Injection using ANSYS Fluent software.
  • We design the 3-D model by the Design Modeler software.
  • We Mesh the model by ANSYS Meshing software.
  • The mesh type is Structured, and the element number equals 675000.
  • This project is simulated and validated with a reference article.
  • We use the Discrete Phase Model (DPM) to define the fuel injection process.

 

Special Offers For All Products

If you need the Geometry designing and Mesh generation training video for all the products, you can choose this option.
Editable geometry and mesh allows users to create and modify geometry and mesh to define the computational domain for simulations.
The case and data files in ANSYS Fluent store the simulation setup and results, respectively, for analysis and post-processing.
Geometry, Mesh, and CFD Simulation methodologygy explanation, result analysis and conclusion

Special Offers For Single Product

Get a FREE consultation to discuss running your simulations on our high-performance computing systems
If you need the Geometry designing and Mesh generation training video for one product, you can choose this option.
editable geometry and mesh allows users to create and modify geometry and mesh to define the computational domain for simulations.
The case and data files in ANSYS Fluent store the simulation setup and results, respectively, for analysis and post-processing.
Geometry, Mesh, and CFD Simulation methodologygy explanation, result analysis and conclusion
Enhancing Your Project: Comprehensive Consultation and Optimization Services
The MR CFD certification can be a valuable addition to a student resume, and passing the interactive test can demonstrate a strong understanding of CFD simulation principles and techniques related to this product.

Description

Comprehensive Injection Simulation Mastery

Welcome to the definitive training package for mastering injection simulations using ANSYS Fluent. This comprehensive course delivers hands-on experience through 11 carefully designed projects that progress from fundamental concepts to advanced applications in various engineering domains. Whether you’re an engineer, researcher, or student, this course will equip you with the skills to accurately model and analyze injection phenomena across multiple industries.

What You’ll Learn

This training package takes you on a journey through the complete spectrum of injection simulation techniques in ANSYS Fluent. You’ll master the Discrete Phase Model (DPM), explore various injection types, analyze time-dependent behaviors, and validate your simulations against experimental data. By completing these projects, you’ll develop proficiency in:

  • Setting up and configuring injection parameters in ANSYS Fluent
  • Implementing various injection types (point, surface, cone)
  • Analyzing particle trajectories and dispersion patterns
  • Evaluating penetration length and spray characteristics
  • Optimizing mesh and time-step size for accurate results
  • Validating simulation results against published research

Course Structure

Foundational Injection Projects

1. Surface Injection using DPM CFD Simulation Master the basics of the Discrete Phase Model and learn how to implement surface injection techniques with proper boundary conditions and parameter settings.

2. Injection Jet on 2D Airfoil, CFD Simulation Explore how injection affects aerodynamic performance by simulating fluid injection on an airfoil surface, analyzing changes in lift, drag, and flow characteristics.

3. Color Spraying on the Wall with Conical Injection Develop skills in modeling conical spray patterns and particle deposition on surfaces, essential for coating and painting applications.

Industrial Applications

4. Spray CFD Simulation using Injection in DPM Advance your knowledge with comprehensive spray modeling techniques, including droplet breakup, coalescence, and evaporation in practical applications.

5. Fuel Injection inside a Chamber 2-D CFD Simulation Learn to simulate fuel injection processes in combustion chambers, analyzing fuel distribution, mixing patterns, and preparation for combustion modeling.

6. Diesel Injection At High Pressure, Penetration Length Analysis Master high-pressure injection simulations with detailed analysis of penetration length, a critical parameter in engine design and optimization.

Advanced Injection Modeling

7. Time Step Size Effect on Particle Injection in Combustion Chamber Develop expertise in transient simulations by investigating how time-step selection impacts particle trajectories and simulation accuracy in combustion applications.

8. Diesel Spray Ultra-High Injection, Paper Numerical Validation Learn validation techniques by reproducing published research results, comparing your simulation outputs with experimental data for ultra-high pressure diesel injection.

9. Nanoparticle Injection (Cone-Type), ANSYS Fluent CFD Simulation Explore specialized applications with nanoparticle injection modeling, including particle tracking, deposition analysis, and concentration distribution.

Specialized Applications

10. VA-111 Shkval Rocket Performance Comparative Study with and without Supercavitation Injection Dive into advanced aerospace applications by analyzing how supercavitation injection affects rocket performance, drag reduction, and velocity profiles.

11. Asthma Spray Inhaler Injection Into the Lung, ANSYS Fluent Training Apply your skills to biomedical engineering by simulating medicinal aerosol delivery, particle deposition in airways, and treatment effectiveness analysis.

Who Should Enroll

This training package is ideal for:

  • Mechanical and aerospace engineers working with spray systems
  • Automotive engineers developing fuel injection technologies
  • Biomedical engineers designing drug delivery systems
  • Chemical engineers optimizing process equipment
  • Graduate students and researchers in fluid dynamics
  • CFD practitioners looking to expand their simulation capabilities

Technical Requirements

  • ANSYS Fluent (compatible with recent versions)
  • Basic understanding of CFD principles
  • Fundamental knowledge of fluid mechanics
  • Basic familiarity with the ANSYS Workbench environment

By completing this comprehensive training course, you’ll possess the expertise to tackle complex injection simulation challenges across multiple industries, validate your models against experimental data, and optimize designs for improved performance and efficiency.

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