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⏱ 2h 54m📚 29 lessons🎧 Audio version
Gas Dynamics and Compressible Flow Fundamentals
Master the principles of compressible fluid flow, isentropic relations, and shock waves through clear written explanations and practical engineering calculations.
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About this course
Gas dynamics is the foundation of aerospace propulsion, high-speed flight, and advanced turbomachinery. Understanding how gases behave at high velocities is essential for designing efficient nozzles, diffusers, and supersonic vehicles. This text-only course guides you from the fundamental principles of thermodynamics and fluid mechanics to the complex behaviors of compressible flows. You will develop a solid intuitive and mathematical understanding of the speed of sound, Mach number, shock waves, and expansion waves.
What you'll learn:
- Understand the core thermodynamic and fluid mechanics principles governing compressible flow.
- Calculate flow properties across normal and oblique shock waves using governing equations.
- Analyze isentropic flow through variable-area ducts, including nozzles and diffusers.
- Apply Prandtl-Meyer expansion fan concepts to supersonic flow scenarios.
- Evaluate one-dimensional flow with friction (Fanno flow) and heat transfer (Rayleigh flow).
- Explore modern computational approaches and numerical modeling concepts used to simulate gas dynamics today.
Starting with essential terminology and thermodynamic relationships, the course progresses systematically through one-dimensional flows, shock waves, and multi-dimensional waves, concluding with practical engineering applications. This course is designed for engineering students and practicing mechanical or aerospace engineers looking for a clear, foundational introduction to compressible flow. No prior background in gas dynamics is required, though basic fluid mechanics knowledge is helpful. Start reading today to master the physics of high-speed gas flows.
Course contents
What you'll get
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⚡Short & focused 2h 54m of practical content
Certificate of completion
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