Evaporation: 10 Practical Exercises, Beginner
Original price was: $2,020.00.$249.00Current price is: $249.00. Student Discount
- Master evaporation and multiphase flow modeling in ANSYS Fluent
- Learn VOF, mixture, and discrete phase modeling techniques
- Simulate real-world applications from industrial to domestic scale
- Analyze droplet dynamics, breakup, and phase change phenomena
- Study heat transfer and mass transfer in various systems
- Apply practical knowledge to environmental and engineering challenges
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Description
Evaporation CFD Simulation Training Package, 10 Practical Exercises by ANSYS Fluent: Beginner Users
This extensive training package guides beginners through the complexities of evaporation modeling using ANSYS Fluent. Through ten carefully structured exercises, participants progress from basic concepts to sophisticated real-world applications.
Progressive Learning Path
Starting with fundamental VOF modeling in heat pipes and dehumidifiers, the course builds a strong foundation in multiphase flow simulation. Participants then advance to more complex scenarios involving droplet dynamics and evaporation in water spraying and misting systems.
The training continues with industrial applications, exploring fluidized bed drying and diesel fuel evaporation. These modules emphasize practical aspects of heat and mass transfer in engineering systems.
Advanced topics include multicomponent particle modeling, hydrate formation, and specialized applications like water distillation and outdoor ventilation systems. The course culminates with a comprehensive study of droplet breakup and evaporation phenomena.
Real-World Applications
Special attention is given to contemporary challenges, including environmental applications like virus spread simulation and practical engineering solutions such as coffee shop misting systems and domestic water distillation.
Technical Competencies Achieved
The training ensures mastery of:
– Volume of Fluid (VOF) methodology
– Discrete Phase Model (DPM) implementation
– Mixture multiphase modeling
– Phase change phenomena
– Particle tracking and breakup models
– Heat and mass transfer calculations
– Industrial system optimization
– Environmental flow analysis
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