COMSOL Multiphysics
Master COMSOL Multiphysics: Simulate Fluid Flow, Heat & Mass Transfer with Confidence
What you'll learn
- Model fluid flow and heat transfer in diverse geometries using COMSOL Multiphysics.
- Simulate mass transfer processes, including diffusion and reactions, in various media.
- Apply COMSOL to model coupled physics phenomena like reacting flows and conjugate heat transfer.
- Analyze simulation results by calculating key engineering parameters like the Nusselt number.
This course includes
- 8.5 hours of video
- Certificate of completion
- Access on mobile and TV
Course content
1 modules • 69 lessons • 8.5 hours of video
COMSOL Multiphysics: Fluid Flow, Heat & Mass Transfer Mastery
69 lessons
• 8.5 hours
COMSOL Multiphysics: Fluid Flow, Heat & Mass Transfer Mastery
- COMSOL Multiphysics: CFD simulation of fluid flow and heat transfer in a rectangular cavity 05:06
- COMSOL Multiphysics: Heat Transfer with Mapped Mesh 03:27
- COMSOL Multiphysics: Reacting Flow with a Reaction Source 04:44
- COMSOL Multiphysics: Fluid Flow and Dehydrogenation Reaction 09:09
- COMSOL Multiphysics: Air Heater 05:10
- COMSOL Multiphysics: fluid flow, heat transfer and mass transfer 07:20
- COMSOL Multiphysics: Free convection heat transfer in a porous medium 08:01
- COMSOL Tutorial: Modeling Natural Heat Convection 08:24
- COMSOL Tutorial: Mass Transfer by Diffusion 05:53
- COMSOL Tutorial: Heat Transfer and Mesh Analysis 09:01
- COMSOL Tutorial: Fluid Flow & Heat Transfer in Corrugated Channels 08:39
- COMSOL Modeling: Nanofluid Flow and Heat Transfer 07:42
- COMSOL : Fluid Flow and Heat Transfer with Heat Source 06:13
- COMSOL: Transient solid heat transfer simulation 07:01
- COMSOL: Pipe with Baffles 05:42
- COMSOL: Heat Transfer in a Channel with Metal Foam 07:46
- COMSOL: Heat Transfer Coefficient for a Pipe 07:51
- COMSOL : Calculating Heat Transfer Coefficient 08:09
- COMSOL : Transient Mass Transfer 06:58
- COMSOL: Fully Developed Flow in Laminar and Turbulent Conditions 08:30
- COMSOL: Slurry flow (Mixture model) 08:20
- COMSOL : Fluid Flow and Mass Transfer with Reaction 07:41
- COMSOL: 2D heat transfer and fluid flow 02:40
- COMSOL: turbulent flow 05:12
- COMSOL: Natural gas pipeline 04:45
- COMSOL: Basic Fluid Flow and Heat Transfer 11:06
- COMSOL: Reacting Flow 08:05
- COMSOL: Heat Exchanger Modelling 16:21
- COMSOL: Two Piple Heat Exchanger 16:09
- COMSOL: Heat conduction (loss) 03:22
- COMSOL: 3D Pipe Flow (Laminar Fluid Flow and Heat Transfer) 13:38
- COMSOL: Fluid Flow and Heat Transfer in a pipe 09:23
- COMSOL: Calculating Nusselt Number for Metal Foam 18:12
- COMSOL: Fluid Flow and Heat Transfer ( Nusselt Number) 10:11
- COMSOL: Natural Convection Heat Transfer (Porous media) 10:53
- COMSOL: Natural Convection Heat Transfer 10:54
- COMSOL: Mass Transfer With Reaction 08:02
- COMSOL: Two- Phase Flow 06:03
- COMSOL: Fluid Flow (Two Outlet) 09:38
- COMSOL: Fluid Flow (Turbulent) 11:03
- COMSOL: PFR Reactor 04:49
- COMSOL: Mass transfer (3D) 07:31
- COMSOL: Euler-Euler Approach 05:00
- COMSOL: Batch Reactor 07:24
- COMSOL: Solving System Of PDE 06:47
- COMSOL: Solving PDE 06:50
- COMSOL: Fluid Flow with Parabolic Velocity 05:14
- COMSOL: Membrane Modeling 10:51
- COMSOL heat transfer 04:16
- COMSOL and Corel link 03:48
- COMSOL: Heat transfer coupled with fluid flow 08:08
- COMSOL: Fluid flow and Heat transfer in Porous Medium 10:32
- COMSOL: Mesh Independence 06:21
- COMSOL: Turbulence modeling 04:45
- COMSOL: Solving ODE 02:53
- COMSOL: ODE System 03:25
- COMSOL: Free Convection 04:04
- COMSOL: transient heat transfer in solids 04:02
- COMSOL: Mass transfer 04:43
- COMSOL: Mass transfer in porous medium 06:18
- COMSOL: Ice Sublimation In Porous Medium 09:14
- COMSOL: Water (vapor) mass transfer in porous media 06:53
- COMSOL: Mass transfer with Reaction and Catalyst 06:54
- Geometry import from SOLIDWORKS to Fluent and COMSOL 09:45
- COMSOL: Heat Exchanger 06:31
- COMSOL: Tumor Treatment (Hyperthermia) 10:12
- COMSOL: Two Phase flow 05:44
- COMSOL: Fluid Flow and Heat transfer with Solid 06:14
- COMSOL Multiphysics: Swirl Flow 04:27
