ANSYS Fluent Training in Chennai

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★★★★★ 4.5/5

Ansys Fluent is one of the most widely used Computational Fluid Dynamics (CFD) tools in the world. It lets engineers simulate fluid flow, heat transfer, turbulence, chemical reactions, multiphase flow and more, all on a computer, before a single prototype is built. From aircraft wings and car bodies to pumps, heat exchangers, HVAC systems, turbines and electronics cooling, Fluent helps engineers test ideas quickly, cut development cost and bring better products to market sooner.

Companies across automotive, aerospace, energy, oil and gas, HVAC, power generation and consumer products rely on Ansys Fluent. Engineers who can set up, run and interpret CFD simulations are in steady demand, and a strong grounding in Fluent is one of the fastest ways to build a career in simulation and analysis.

For More Details: Register today for ANSYS Fluent Training and start your CFD career.

Learn ANSYS Fluent Training In Chennai

Course Highlights

Our Ansys Fluent course takes you from the fundamentals of fluid mechanics to complete, industry-style CFD projects. You will learn the full simulation workflow: preparing geometry, generating a quality mesh, defining physics and boundary conditions, solving, and post-processing the results into decisions.

  • Prepare and clean CAD geometry using Ansys SpaceClaim / Discovery, so you reach simulation faster
  • Generate structured and unstructured meshes with Ansys Meshing and Fluent Meshing
  • Choose the right turbulence model (k-epsilon, k-omega SST, and more) for your problem
  • Model heat transfer: conduction, convection, radiation and conjugate heat transfer
  • Simulate multiphase, combustion and particle-tracking problems
  • Interpret results with contour plots, vector plots, streamlines, animations and reports
  • Learn to judge convergence, mesh independence and result accuracy, the skills employers look for

Why ANSYS Training in SSA?

  • Course modules designed to match current global industry requirements
  • Online Ansys Fluent course also available
  • Customized syllabus based on your background and career goal
  • Flexible batch timings: weekday, weekend and fast-track
  • Certified, experienced trainers who work in CFD every day
  • One-to-one training option so you learn at your own pace
  • Separate learning paths for freshers, working professionals, entrepreneurs and career-changers
  • Personalized target planning and regular progress reviews
  • Project-oriented training with case studies drawn from real industries
  • Regular workshops to sharpen skills and keep you updated
  • Corporate training experience with reputed engineering companies, so the syllabus reflects what industry actually needs
  • Placement and entrepreneurship guidance
  • One of the most affordable Ansys Fluent course fees in Chennai
  • Classroom and instructor-led live online training

Upcoming Batches

Weekdays Training

Weekend Training

Classroom Training

  • Get trained by Industry Experts via Classroom Training at any of the SSA branches near you
  • Why Wait? Jump Start your Career by taking the ANSYS Fluent Course in Chennai!

Instructor-Led Live Online Training

  • Take-up Instructor-led Live Online Training.
  • Travelling is a Constraint? Jump Start your Career by taking the ANSYS Fluent Online training!

Syllabus

  • Introduction to CFD
  • Applications of CFD
  • Fluid flow fundamentals
  • Continuity equation
  • Momentum equation
  • Energy equation
  • Conservation laws
  • Laminar and turbulent flow
  • Steady and transient flow
  • Compressible and incompressible flow
  • Viscous and inviscid flow
  • CFD workflow
  • Introduction to ANSYS Workbench
  • ANSYS Fluent overview
  • Fluent solver interface
  • Fluent Meshing interface
  • Geometry and mesh workflow
  • Fluent Launcher
  • Solver selection
  • Double precision and parallel processing
  • Project setup
  • Units and dimensions
  • Solution workflow
  • Geometry creation and import
  • SpaceClaim / DesignModeler overview
  • Fluid domain creation
  • Geometry cleanup
  • Surface repair
  • Named selections
  • Boundary zone identification
  • Internal and external flow domains
  • Enclosure creation
  • Symmetry geometry
  • Introduction to CFD meshing
  • Mesh types
  • Structured and unstructured mesh
  • Tetrahedral mesh
  • Hexahedral mesh
  • Polyhedral mesh
  • Prism and inflation layers
  • Surface mesh
  • Volume mesh
  • Local mesh refinement
  • Boundary layer mesh
  • Mesh quality
  • Skewness
  • Orthogonal quality
  • Aspect ratio
  • Mesh independence study
  • Solver selection
  • Pressure-based solver
  • Density-based solver – basics
  • Steady-state analysis
  • Transient analysis
  • Absolute and relative velocity
  • Operating conditions
  • Gravity
  • Reference values
  • Material assignment
  • Cell zone conditions
  • Boundary conditions
  • Solution initialization
  • Introduction to boundary conditions
  • Velocity inlet
  • Pressure inlet
  • Mass flow inlet
  • Pressure outlet
  • Wall boundary
  • Symmetry boundary
  • Periodic boundary
  • Inlet and outlet conditions
  • Wall motion
  • Thermal boundary conditions
  • Boundary condition selection
  • Boundary condition validation
  • Fluid material definition
  • Solid material definition
  • Density
  • Viscosity
  • Specific heat
  • Thermal conductivity
  • Constant properties
  • Temperature-dependent properties
  • Ideal gas model
  • Incompressible flow materials
  • Material assignment
  • Material property validation
  • Introduction to turbulence
  • Laminar flow model
  • Turbulence modelling concepts
  • Standard k-epsilon model
  • RNG k-epsilon model
  • Realizable k-epsilon model
  • Standard k-omega model
  • SST k-omega model
  • Reynolds Stress Model – introduction
  • Turbulence intensity
  • Turbulence length scale
  • Wall treatment
  • Model selection considerations
  • Pressure-velocity coupling
  • SIMPLE
  • SIMPLEC
  • PISO
  • Coupled solver
  • Pressure discretization
  • Momentum discretization
  • Energy discretization
  • Gradient methods
  • Under-relaxation factors
  • Residual monitors
  • Convergence criteria
  • Numerical stability
  • Solution controls
  • Introduction to heat transfer
  • Conduction
  • Convection
  • Radiation – basics
  • Energy equation
  • Thermal boundary conditions
  • Temperature-dependent properties
  • Conjugate heat transfer
  • Solid and fluid regions
  • Heat flux
  • Thermal contours
  • Temperature distribution
  • Heat transfer coefficient
  • Thermal performance evaluation
  • Introduction to multiphase flow
  • Multiphase flow applications
  • Eulerian and Lagrangian concepts
  • Volume of Fluid (VOF)
  • Mixture model
  • Eulerian model – introduction
  • Phase definition
  • Phase interaction
  • Surface tension – basics
  • Multiphase boundary conditions
  • Result interpretation
  • Compressible flow
  • Pressure-based compressible flow
  • Density-based solver concepts
  • High-speed flow – basics
  • Compressible fluid properties
  • Shock waves – introduction
  • Rotating machinery – basics
  • Moving reference frames
  • Multiple reference frames
  • Sliding mesh – introduction
  • Flow through rotating equipment
  • Introduction to Fluent post-processing
  • Contour plots
  • Velocity contours
  • Pressure contours
  • Temperature contours
  • Turbulence contours
  • Vector plots
  • Streamlines
  • Pathlines
  • Surface integrals
  • Volume integrals
  • Flow rate calculation
  • Pressure drop
  • Force and moment calculation
  • Heat transfer rate
  • Residual plots
  • Report generation
  • Convergence assessment
  • Residual monitoring
  • Mass balance
  • Conservation checks
  • Mesh independence
  • Sensitivity analysis
  • Comparison with analytical solutions
  • Comparison with experimental data
  • Result verification
  • Flow and thermal performance evaluation
  • Engineering report preparation

Project 1 – Internal Pipe Flow Analysis

  • Geometry preparation
  • Fluid domain creation
  • Mesh generation
  • Boundary condition setup
  • Pressure and velocity analysis
  • Pressure drop calculation
  • Result validation

 

Project 2 – External Aerodynamics

  • External flow domain
  • Surface and volume mesh
  • Turbulence model selection
  • Inlet and outlet conditions
  • Pressure and velocity contours
  • Drag and lift evaluation
  • Flow visualization

 

Project 3 – Heat Transfer Analysis

  • Fluid and solid domain setup
  • Material properties
  • Mesh generation
  • Energy equation
  • Thermal boundary conditions
  • Temperature contours
  • Heat transfer evaluation

 

Project 4 – Rotating Machinery Flow

Rotating domain setup

Fluid zone definition

Mesh preparation

MRF approach

Boundary conditions

Velocity and pressure analysis

Performance evaluation

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Trainer Profile

  • Our trainers combine strong theoretical knowledge with hands-on CFD practice, so what you learn matches what industry expects.
  • Instructors are working professionals with experience in CFD and simulation, many with corporate training backgrounds.
  • The training team stays current with industry needs and software updates, and we pass these to every batch.
  • Trainers deliver real-time, project-based sessions, not slides alone.
  • Every student can receive individual attention, with the pace and depth adjusted to their needs.
  • We help you build a focused resume, a simulation project portfolio and the confidence to face technical interviews.

Features

Years Of Experience

Learning a technology with a professional who is well expertise in that solve 60% of your needs.

Fully Hands-on Training

We support any training with more practical classes. So, we always prefers to give hands-on training.

Flexible Timings

We started with 2 trainers, now we are 100+ and it’s still increasing. So we can give the students flexibility timings.

Affordable Fees

If you need software assistance we are here to back you up. Bring your laptop and load the required software and learn.

Lab Support

If you need software assistance we are here to back you up. Bring your laptop and load the required software and learn.

Interview Preparation

Every course in covered with interview point questions and real-time scenarios of what the company may look after from you.

Certifications

ANSYS Fluent Certification Training

About ANSYS Fluent Certification Training in Chennai at SSA

An Ansys Fluent certificate shows employers that you have practical knowledge of CFD and have applied it to real project work. With a live project completed at the end of the course, your certificate is backed by demonstrable skills, which helps your profile stand out during shortlisting and interviews.

Our certification is awarded after successful completion of the course modules and the capstone project, under the guidance of trainers who have experience in simulation and corporate training.

Opportunity

Job Opportunities After Completing ANSYS Fluent Course in Chennai

CFD skills are needed wherever fluids and heat are involved. After completing the course you can apply for roles such as:

  • CFD Engineer / CFD Analyst
  • Simulation Engineer
  • Thermal Analyst
  • Aerodynamics Engineer
  • HVAC Design Engineer
  • Design Engineer (Mechanical)
  • R&D Engineer
  • Application Engineer (CAE)

Industries hiring CFD talent: automotive, aerospace and defence, HVAC and refrigeration, power and energy, oil and gas, turbomachinery, electronics cooling, marine, process industries and product design consultancies.

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Reviews

FAQ'S

  • SSA students can have a vast and practical kind of course knowledge since they get Ansys Fluent training from the corporate trainers who are with experience.
  • The only institution in Chennai who first introduced the ‘one to one’ training in professional courses.
  • Affordable and reasonable fee structure.
  • Flexible course timings.
  • Corporate trainers.
  • SSA was inaugurated and commenced its service and operations in 2014 as an independent institute for training technical designs and concepts for all engineering courses.
  • After 7 years of tremendous growth, today SSA has served Job cum entrepreneurship for 200+ students.
  • More than 500 students have been trained from 20+ colleges and have been benefited by our quality teaching concepts.
  • SSA has placed 80+ students in the corporates in mechanical and civil domain.
  • SSA is carrying out consecutive trainings in wiring harness, ArtCAM and various mechanical and civil soft wares and courses for leading and giant corporates like Bosch, L&T ,caterpillar etc..,
  • SSA is being tagged with consecutive corporate trainings on behalf of its quality services in technical concepts.
  • SSA’s ultimate goal and responsibility is to be trustworthy and enlighten the technical knowledge to the students and corporate personals in the time of need.

Trainers are Industry Experts who have a decade of experience as corporate trainers/Real time designers and practitioners in mechanical, Electrical and civil industries. Also, the Training faculty of SSA are domain oriented graduates with vast academic knowledge, working professionals from the mechanical, Electrical and civil field who provide hands-on training to the students.

SSA provides trainings both offline and online.

  • Offline
  • online
  • Available
  • Cash, card, Upi , net banking.