Fluid Mechanics Course
This course equips learners with essential skills in fluid mechanics for high-altitude UAV design, focusing on drag prediction, aerodynamics, boundary layer analysis, inlet design, and dimensional scaling techniques using real-world atmospheric data.

from 4 to 360h flexible workload
valid certificate in your country
What will I learn?
This Fluid Mechanics Course provides practical tools to predict lift, drag, and power requirements for high-altitude UAVs. You will learn to estimate induced, parasite, and skin-friction drag, compile total drag coefficients, and compute propulsion power. Employ dimensional analysis, uncertainty techniques, and basic analytical models, utilising actual atmospheric data and inlet performance methods to make dependable, evidence-based aerodynamic choices.
Elevify advantages
Develop skills
- Drag and power prediction: estimate UAV drag, induced drag, and shaft power quickly.
- High-altitude aerodynamics: size wings and lift for 16 km UAV cruise in minutes.
- Boundary layer control: assess laminar–turbulent regimes and skin-friction drag.
- Inlet flow design: size intakes, predict losses, and ensure mass flow at 16 km.
- Dimensional analysis tools: use Re, Ma, and q to scale tests to real UAV flight.
Suggested summary
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