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Introduction to GUI based CFD using ANSYS Fluent in Pune

If you have a keen interest in Aviation and Thermal Industries and have been meaning to dig deep and understand a powerful Computational Fluid Dynamics (CFD) tool like ANSYS Fluent, this is the course for you

12 weeks long course | 100% Online

Learn from leading experts in the industry

Project based learning with 2 industry level projects that learners can showcase on LinkedIn.

Learn Key Tools & Technologies ANSYS Fluent, SpaceClaim, CFD Post

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Syllabus

This course is full of best-in-class content by leading faculty and industry experts in the form of videos and projects

Course Overview

  • Students will be able to understand and practice the general workflow needed to solve a problem in CFD all the way from setting up the computational domain using Ansys SpaceClaim to post-processing the results in CFD-Post.
  • Multi-Phase modelling, Discrete Phase modelling, Conjugate Heat Transfer, Combustion modelling and External aerodynamics are the concepts covered in this course. 
  • Students shall gain insights into standard modelling techniques like geometry clean up, standard meshing strategies, assigning proper boundary conditions and post-processing.
  • By the end of the course, students will have the technical know-how to solve CFD problems using the Fluent software package.

Course Syllabus in Pune

On a daily basis we talk to companies in the likes of Tata Elxsi and Mahindra to fine tune our curriculum.

Week 01 - Introduction to CFD

  • In this module, you will understand what CFD is and its uses. You will also be introduced to the basic governing equations solved and many schemes and algorithms used to stabilize and improve the accuracy of the solution.
    • Governing Equations of Fluid Motion
    • Numerical Discretization
    • Fluid Solver
    • Boundary Conditions
    • Post-Processing

Week 02 - Simulating Laminar and Turbulent Flows in ANSYS Fluent

  • In this module, the focus is to simulate basic compressible and incompressible flows using ANSYS Fluent. You will be introduced to the streamlined workflow on the Workbench tool, from geometry creation to the solution post-processing procedure. You will get hands-on experience in
    • Geometry Creation
    • Meshing
    • Boundary and Initial Condition Calculation
    • Setting up solution algorithms
    • Solving and post-processing

Week 03 - Performing Steady State Simulations

  • In this module, the focus is to simulate basic compressible and incompressible steady-state simulations. This provides you with an introduction to the solution setup procedure for a steady-state simulation. You will get hands-on experience in
    • Geometry created using SpaceClaim
    • How to set up Steady-State Simulations?
    • Checking for Convergence and understanding when the simulation converges for different boundary conditions
    • How to create Runtime Animation of Engineering Parameters?
    • Project 1: HVAC Simulation Inside a Mixing TEE
    • Project 2: Performing Parametric Study on Flow Inside a Gate Valve
    • Project 3: Performance Characterization of a Cyclone Separator

Week 04 - Exploring Meshing strategies

  • Meshing is an important component in CFD analysis. Improper meshing can lead to bad results. In this module, you will learn the different meshing techniques that can improve the solution accuracy with a balanced computational cost. More hands-on experience in
    • Methods of providing local refinement like Sphere of Influence, Body Sizing, etc.
    • Concept of Y plus and its importance
    • Inflation Layers and Controls
    • Mesh Dependence Test

Week 05 - External Aerodynamics

  • You will learn the fundamentals of performing external flow analysis using ANSYS Fluent. It provides you with knowledge on boundary layer concepts, needs of Y plus, and wall functions. Here, we will focus on the following topics.
    • Setting up Virtual Wind Tunnels using the Enclosure Utility
    • Understand Vortices, calculating Downforce & the drag on a Vehicle
    • Y+ Estimation & Grid Refinement

Week 06 - Conjugate Heat Transfer

  • In this module, you will learn how to simulate solid-side heat transfer along with the fluid flow. Conjugate Heat Transfer (CHT) refers to simulating multiple modes of heat transfer. For example, in one of the projects, you will simulate the heat transfer in an exhaust manifold when hot exhaust products are flowing through it. When you complete this module, you will be able to do the following:
    • Extracting solid and fluid volumes
    • Creating Shared Topologies for Creating Conformal Meshes
    • Setting up Volumetric Heat Sources
    • Visualizing Heat Transfer Coefficient Distribution

Week 07 - Discrete Phase Modelling

  • Discrete Phase Modelling (DPM) is used to model particles, fuel drops, coal, and any other type of suspended phase. You will work on problems like the Cyclone Separator, where you will incorporate the DPM approach to simulate how suspended impurities travel through a Cyclone Separator. You will get hands-on experience in
    • Different types of discrete phase boundary conditions and their effects
    • Methods of tracking the Discrete Phase Particles
    • Turbulence Intensity and Vortex Core Visualisation

Week 08 - Introduction to User Defined Functions

You will learn how to write a customized program, create different monitor points, and extract the relevant information you need to form a simulation.

Week 09 - Basic Reacting Flows

In this module, you will learn how to simulate reacting flows using ANSYS Fluent. This includes combustion applications.

Our courses have been designed by industry experts to help students achieve their dream careers

Industry Projects in Pune

Our projects are designed by experts in the industry to reflect industry standards. By working through our projects, Learners will gain a practical understanding of what they will take on at a larger-scale in the industry. In total, there are 2 Projects that are available in this program.

Conjugate Heat Transfer Analysis on a Graphics Card

In order to achieve effective cooling of the GPU, you will analyze the heat transfer coefficient and high-temperature concentration zones of the system.

Oil Sloshing Analysis through Dynamic Meshing

In this project, you will define the motion of the gear using the pre-existing functions present in ANSYS Fluent and analyze the sloshing effect produced by lubricants in the gear box.

Our courses have been designed by industry experts to help students achieve their dream careers

Ratings & Reviews by Learners

Skill-Lync has received honest feedback from our learners around the globe.

Google Rating
4.6

Explore Your Career Growth with the Introduction to GUI-Based CFD using ANSYS Fluent Course in Pune

 This ANSYS Fluent course by Skill-Lync is designed by industry experts to give you knowledge of CFD and equip you with skills needed to set you apart in the competitive job market. 

The Introduction to GUI-Based CFD using ANSYS Fluent Course in Pune

This course by Skill-Lync will give you an understanding of problem-solving techniques in CFD. It is a 12-week course with a flexible learning model offering both theoretical and practical knowledge. Experts in the industry will teach you how to use tools like ANSYS Fluent, SpaceClaim, and CFD posts. You will develop an understanding of standard modelling techniques, CFD problem solving with multi-phase modelling, etc. The ANSYS Fluent online course will also cover the simulation of laminar and turbulent flows in ANSYS Fluent, meshing strategies exploration, external aerodynamics, etc. 

 During this ANSYS CFD course, you will get a chance to work on two industry projects focused on conjugate heat transfer analysis on a graphics card and oil sloshing analysis through dynamic meshing. These projects will help build your portfolio. 

FAQs about the Introduction to GUI-Based CFD using ANSYS Fluent Course in Pune

 Q 1. What are the ANSYS course fees in Pune?

The course comes in three different plans. The Basic plan gives students course access for 2 months at ₹7,000 per month over 3 months, the Pro plan grants access for 4 months at ₹10,000 per month over 3 months, and the Premium plan is a lifetime access plan at ₹15,000 per month over 3 months.

 Q 2. What are the career prospects after completing the ANSYS CFD course in Pune?

 After completing this ANSYS CFD course, you can apply for the following roles:

 · Thermal Dynamics Engineer

· CFD Simulation Engineer

· Aero Thermal Engineer

· Aero-X Engineer

 Q 3. What is the expected salary range after completing the ANSYS Fluent course in Pune?

 The expected average salary of a newly appointed ANSYS CFD specialist is ₹13 lakhs per annum. However, this salary can vary based on your skills and experience. 

 Q 4. Why choose the Introduction to GUI-based CFD using ANSYS Fluent course by Skill-Lync in Pune? 

This ANSYS Fluent course has been curated by industry experts with seven years of experience in the CFD domain. As such, you will receive the latest insights into the industry. The course also delves into topics such as discrete phase modelling, introduction to user-defined functions, basic reacting flows, etc. 

 Q 5. Who should take this ANSYS Fluent course in Pune? 

This ANSYS Fluent course is open to anyone with a mechanical or thermal engineering background. This course is also beneficial for working professionals looking to upskill. 

 Q 6. What are the benefits of choosing the Introduction to GUI-based CFD using ANSYS Fluent course at Skill-Lync in Pune?

At the end of the ANSYS CFD course in Pune, you will receive a course completion certificate. If you're in the top 5%, you will be eligible for a merit certificate. Additionally, you will be provided with email and forum support throughout the course to solve all your queries. 

Instructors profiles

Our courses are designed by leading academicians and experienced industry professionals.

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1 industry expert

Our instructors are industry experts along with a passion to teach.

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7 years in the experience range

Instructors with 7 years extensive industry experience.

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Areas of expertise

  • CFD

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