Understanding how liquids and gases behave is critical for modern engineering, yet setting up computational fluid dynamics (CFD) simulations can feel overwhelming without a solid foundation. This course bridges the gap between complex physics equations and practical, real-world simulation setups. You will develop a structured, meaningful approach to formulating engineering problems, choosing the right boundary conditions, and analyzing flow behavior in modern industrial CFD suites like FlowVision and other solver packages.
What you'll learn:
- Understand the foundational physics of fluid and gas dynamics required for accurate simulations.
- Formulate simulation problems correctly by defining appropriate boundary conditions and physical properties.
- Select the right turbulence models and solver settings for diverse engineering scenarios.
- Apply modern mesh generation techniques to balance computational speed with numerical accuracy.
- Analyze and validate simulation results using industry-standard verification and validation protocols.
- Navigate the workflow of modern industrial CFD software, including FlowVision and general finite volume solvers.
The course begins with core theoretical concepts and governing equations before guiding you through step-by-step written walkthroughs of simulation setup, mesh refinement, and post-processing analysis. Designed for beginner engineers, physics students, and designers with no prior CFD experience, this text-only program requires no advanced software access to learn. Start reading today to master the fundamentals of computational fluid dynamics and elevate your engineering design process.
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