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⏱ 2h 42m📚 27 lessons
Advanced Gas Dynamics for Aerospace and Mechanical Engineers
Master the principles of compressible flow, shock waves, and high-speed aerodynamics through clear, step-by-step written explanations and practical engineering problems.
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About this course
High-speed aerospace and propulsion systems rely heavily on a precise understanding of how gases behave at extreme velocities. If you want to design efficient nozzles, analyze supersonic aircraft, or understand atmospheric reentry, mastering compressible flow is essential. This course guides you from the fundamental thermodynamic principles to advanced wave behaviors in high-speed flows.
You will transition from basic fluid mechanics to solving complex gas dynamics problems, gaining the analytical skills required to evaluate supersonic and hypersonic flow regimes. By reading through our structured explanations, you will learn to calculate flow properties across various shock configurations and duct geometries.
What you'll learn:
- Understand the foundational concepts of compressibility, speed of sound, and governing equations for compressible flow
- Analyze one-dimensional flows with heat transfer (Rayleigh flow) and friction (Fanno flow)
- Evaluate normal and oblique shock wave relations to predict pressure and temperature changes
- Apply expansion wave theories, including Prandtl-Meyer flow, to supersonic aerodynamic surfaces
- Practice solving multidimensional flow problems using modern linearized flow approximations
- Explore modern computational gas dynamics concepts and thermodynamic modeling for high-temperature flows
The course begins with a thorough review of fundamental thermodynamic properties and control volume equations. Next, you will progress through one-dimensional steady flows, shock wave phenomena, and multi-dimensional expansion theories, concluding with an introduction to modern numerical methods used in high-speed flow analysis.
This course is designed for engineering students, researchers, and practicing mechanical or aerospace engineers who want to build a strong theoretical foundation in gas dynamics. No advanced prior knowledge of compressible flow is required, though a basic understanding of classical thermodynamics and fluid mechanics is recommended.
Start reading today to master the physics of high-speed gas flows and elevate your aerodynamic analysis skills.
What you'll get
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⚡Short & focused 2h 42m of practical content
Certificate of completion
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Advanced Gas Dynamics for Aerospace and Mechanical Engineers