MR CFD’s All Courses

Here's every Course from Basic to Advanced, that can boost your skills and career.

140 Courses

Price: $79

Build intermediate-level expertise in biomedical and healthcare CFD with this 10-project ANSYS Fluent training package — covering clinical facility ventilation, airborne virus transmission risk across hospital and public settings, and cardiovascular hemodynamics from basic pulsatile blood flow to advanced FSI-coupled vessel and bypass graft simulations.

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Price: $79

Advance your architectural CFD skills with this 9-project ANSYS Fluent training package — covering solar radiation and daylighting on building envelopes, atrium and façade-driven natural ventilation, and urban-scale air pollution and heat island analysis around real building environments.

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Price: $49

Intermediate agricultural CFD training with 10 ANSYS Fluent projects. Covers open-channel and two-phase flow, spillways, river pollution, greenhouse ventilation, drying, and biomass processing. Includes side-outlet and 180-degree channel flows for hydraulic applications. Covers both wide-edge and labyrinth spillway simulations. Applies CFD to pollutant transport in meandering and stagnant rivers. Includes greenhouse ventilation and a horizontal fluidized bed dryer. Every project includes geometry, mesh, and a comprehensive training video.

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Price: $79

10 intermediate ANSYS Fluent projects across aerodynamics and aerospace Transonic flow over the NACA 0012 airfoil, in 3-D F-35 compressible flow simulation on a full aircraft geometry Aerospike shock wave and rocket engine nozzle projects for propulsion Aircraft propeller solved with mesh motion; golf ball impact with dynamic mesh Switchblade 300 drone transient solver as the capstone case

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Price: $39

User-Defined Functions (UDF): Beginner CFD Training Package is a ten-project introduction to writing and applying UDFs in ANSYS Fluent. Starting from the core macros — property, profile, source, and motion — and building through applied cases like pulsatile blood flow, sloshing, piston motion, and plasma flow control, it gives newcomers a hands-on, application-driven foundation in the C-based customization that extends Fluent beyond its built-in capabilities — one real engineering case at a time.

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Price: $39

Species transport ANSYS Fluent training — 10 beginner-level, project-based tutorials. Simulate non-reacting species mixing: engine manifold intake, air freshener spray, cough virus spread, operating-room HVAC. Scale up to urban pollution dispersion: street canyon between buildings and a full real urban zone. Add thermal coupling with battery water-vapor cooling. Switch on chemistry: steam methane reforming (SMR), 2-D gas turbine combustion chamber, and a propagating explosion capstone. Every project: geometry → meshing → setup → solution → results interpretation. No prior CFD experience required — total runtime ≈ 3 h 46 min.

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Price: $49

10 hands-on ANSYS Fluent projects on PCM simulation and solidification/melting CFD. Beginner-level package. No phase-change experience required; basic Fluent skills assumed. Covers latent heat, mushy-zone constant, liquid fraction, and moving melt-front tracking. Enhancement techniques included: fins, nanoparticle PCM, sandwiched layers, corrugated tubes. Real systems: shell-and-tube PCM heat exchanger, solar water heater, PCM air conditioning. Total runtime: 3 hours 12 minutes across 10 lessons. Every lesson is a full workflow: geometry, mesh, setup, solve, post-processing. Certificate issued on completion.

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Two-Blade Savonius Wind Turbine: 3-D

Beginner, Intermediate, Advanced

Price: $48

This project uses ANSYS Fluent to numerically simulate a Savonius (two-blade) wind turbine. The 3D model is built in SpaceClaim. The model is meshed in ANSYS Meshing, with an element count of 494,456. The simulation is run as unsteady (transient). The Mesh Motion model is used to define the rotational motion.

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Two-Blade Savonius Wind Turbine: 2-D

Beginner, Intermediate, Advanced

Price: $42

This project uses ANSYS Fluent to numerically simulate a Savonius vertical axis wind turbine. The 2D model is built in Design Modeler. The model is meshed in ANSYS Meshing, with an element count of 58,468. The simulation is run as unsteady (transient). The Mesh Motion model is used to define the rotational motion.

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