Udemy - Aerospace Systems - Fixed-Wing Aircraft Aerodynamics

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Udemy - Aerospace Systems - Fixed-Wing Aircraft Aerodynamics (Size: 388.4 MB)
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
  ~Get Your Files Here !
  1 - Module 1 — Aerodynamic Foundations
  1. L01 Introduction to Fixed-Wing Flight.en_US.srt 6.3 KB
  1. L01 Introduction to Fixed-Wing Flight.mp4 17.3 MB
  2 - Module 2 — Low-Speed Aerodynamics and Stall
  10. L10 Reynolds Number and Aerodynamic Scaling.en_US.srt 4.4 KB
  10. L10 Reynolds Number and Aerodynamic Scaling.mp4 13.1 MB
  11. L11 Ground Effect and Low-Altitude Behaviour.en_US.srt 4 KB
  11. L11 Ground Effect and Low-Altitude Behaviour.mp4 13.2 MB
  12. L12 Gusts, Turbulence, and Atmospheric Disturbances.en_US.srt 3.8 KB
  12. L12 Gusts, Turbulence, and Atmospheric Disturbances.mp4 11.8 MB
  3 - Module 3 — Wings and High-Lift Systems
  13. L13 Wing Planform, Aspect Ratio, and Span Efficiency.en_US.srt 3.9 KB
  13. L13 Wing Planform, Aspect Ratio, and Span Efficiency.mp4 11.8 MB
  14. L14 Sweep, Dihedral, and Wing Twist.en_US.srt 4.3 KB
  14. L14 Sweep, Dihedral, and Wing Twist.mp4 12.8 MB
  15. L15 Leading-Edge Devices Slats, Krueger Flaps, Slots.en_US.srt 3.8 KB
  15. L15 Leading-Edge Devices Slats, Krueger Flaps, Slots.mp4 12.1 MB
  16. L16 Trailing-Edge Flaps Plain, Split, Slotted, Fowler.en_US.srt 3.8 KB
  16. L16 Trailing-Edge Flaps Plain, Split, Slotted, Fowler.mp4 11.4 MB
  17. L17 Winglets, Raked Tips, and Induced-Drag Reduction.en_US.srt 2.7 KB
  17. L17 Winglets, Raked Tips, and Induced-Drag Reduction.mp4 8.7 MB
  18. L18 Spoilers, Speed Brakes, and Lift Dumpers.en_US.srt 3.7 KB
  18. L18 Spoilers, Speed Brakes, and Lift Dumpers.mp4 11.9 MB
  4 - Module 4 — High-Speed and Transonic Aerodynamics
  19. L19 Compressibility and Mach Number.en_US.srt 3.8 KB
  19. L19 Compressibility and Mach Number.mp4 12.4 MB
  20. L20 Effects and Shock-Wave Formation.en_US.srt 4.2 KB
  20. L20 Effects and Shock-Wave Formation.mp4 12.4 MB
  21. L21 Supersonic Wing Design and Area Ruling.en_US.srt 3.8 KB
  21. L21 Supersonic Wing Design and Area Ruling.mp4 11.7 MB
  22. L22 Wave-Drag Management.en_US.srt 2.4 KB
  22. L22 Wave-Drag Management.mp4 7.6 MB
  23. L23 Hypersonic Considerations.en_US.srt 2.9 KB
  23. L23 Hypersonic Considerations.mp4 8.9 MB
  24. L24 Aeroelasticity Flutter, Divergence, Control Reversal.en_US.srt 2.9 KB
  24. L24 Aeroelasticity Flutter, Divergence, Control Reversal.mp4 8.9 MB
  5 - Module 5 — Propulsion
  25. L25 Propeller Aerodynamics and Blade-Element Theory.en_US.srt 2.9 KB
  25. L25 Propeller Aerodynamics and Blade-Element Theory.mp4 8.5 MB
  26. L26 Piston Aero-Engines and Constant-Speed Propellers.en_US.srt 2.8 KB
  26. L26 Piston Aero-Engines and Constant-Speed Propellers.mp4 8.9 MB
  27. L27 Turbojet Thermodynamic Cycle.en_US.srt 3 KB
  27. L27 Turbojet Thermodynamic Cycle.mp4 9 MB
  28. L28 Turbofan Cycle Bypass Ratios Explained.en_US.srt 2.9 KB
  28. L28 Turbofan Cycle Bypass Ratios Explained.mp4 9.2 MB
  29. L29 Turboprop and Turboshaft Cycles.en_US.srt 2.8 KB
  29. L29 Turboprop and Turboshaft Cycles.mp4 9 MB
  30. L30 Afterburners, Variable-Geometry Inlets, and Thrust Vectoring.en_US.srt 3.2 KB
  30. L30 Afterburners, Variable-Geometry Inlets, and Thrust Vectoring.mp4 9.4 MB
  6 - Module 6 — Flight Controls and Stability
  31. L31 Three-Axis Control Ailerons, Elevator, Rudder.en_US.srt 2.6 KB
  31. L31 Three-Axis Control Ailerons, Elevator, Rudder.mp4 8.2 MB
  32. L32 Secondary Surfaces Trim Tabs, Servo Tabs, All-Flying Tails.en_US.srt 2.6 KB
  32. L32 Secondary Surfaces Trim Tabs, Servo Tabs, All-Flying Tails.mp4 8.5 MB
  33. L33 Static Stability Longitudinal, Lateral, Directional.en_US.srt 2.4 KB
  33. L33 Static Stability Longitudinal, Lateral, Directional.mp4 7.5 MB
  34. L34 Dynamic Modes Phugoid, Short-Period, Dutch Roll, Spiral.en_US.srt 2.3 KB
  34. L34 Dynamic Modes Phugoid, Short-Period, Dutch Roll, Spiral.mp4 7.3 MB
  35. L35 Fly-By-Wire Architecture and Redundancy.en_US.srt 2.8 KB
  35. L35 Fly-By-Wire Architecture and Redundancy.mp4 8.8 MB
  7. L07 Boundary Layers Laminar vs Turbulent.en_US.srt 3.9 KB
  7. L07 Boundary Layers Laminar vs Turbulent.mp4 12.8 MB
  8. L08 Flow Separation and Stall Mechanics.en_US.srt 4 KB
  8. L08 Flow Separation and Stall Mechanics.mp4 11.8 MB
  9. L09 Angle of Attack and the Lift Curve.en_US.srt 3.7 KB
  9. L09 Angle of Attack and the Lift Curve.mp4 11.7 MB
  2. L02 The Atmosphere, Density, and the Standard Day.en_US.srt 4.6 KB
  2. L02 The Atmosphere, Density, and the Standard Day.mp4 15 MB
  3. L03 Airfoil Geometry and Terminology.en_US.srt 5.4 KB
  3. L03 Airfoil Geometry and Terminology.mp4 14.9 MB
  4. L04 Pressure Fields and Lift Generation.en_US.srt 4.8 KB
  4. L04 Pressure Fields and Lift Generation.mp4 13.1 MB
  5. L05 Circulation, Vorticity, and the Kutta Condition.en_US.srt 5.1 KB
  5. L05 Circulation, Vorticity, and the Kutta Condition.mp4 13.9 MB
  6. L06 Drag Decomposition Form, Skin-Friction, Induced, Wave.en_US.srt 5.3 KB
  6. L06 Drag Decomposition Form, Skin-Friction, Induced, Wave.mp4 15 MB

Description


Aerospace Systems: Fixed-Wing Aircraft Aerodynamics
https://WebToolTip.com
Last updated 4/2026

Created by Omar Koryakin

MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch

Level: All Levels | Genre: eLearning | Language: English + subtitle | Duration: 35 Lectures ( 1h 39m ) | Size: 389 MB
Wings, propulsion, flight controls, stealth, structures, and systems the full fixed-wing aircraft stack for working en
What you'll learn

⚡ • Explain how lift, drag, and thrust interact across the full flight envelope, from takeoff to cruise to landing.

⚡ • Predict boundary-layer behaviour, flow separation, and stall onset from an airfoil + angle-of-attack combination.

⚡ • Read a wing planform and infer its speed regime, manoeuvrability, sweep strategy, and high-lift system.

⚡ • Analyse transonic and supersonic phenomena — shock-wave formation, wave drag, and area ruling.

⚡ • Explain aeroelastic failure modes — flutter, divergence, and control reversal — at engineering level.

⚡ • Compare turbojet, turbofan, turboprop, turboshaft, and piston propulsion on thrust, SFC, weight, and mission fit.

⚡ • Walk through a fly-by-wire control architecture, including redundancy, control laws, and envelope protection.

⚡ • Identify the four classical dynamic stability modes — phugoid, short-period, Dutch roll, spiral — and why they matter.

⚡ • Trace primary load paths in a metallic or composite airframe and relate them to inspection intervals.

⚡ • Describe safe-life vs fail-safe vs damage-tolerant design philosophies and when each applies.

⚡ • Explain stealth shaping (faceting, planform alignment, S-ducts), RAM, and IR-signature management.

⚡ • Interpret an aircraft's hydraulic, pneumatic, fuel, electrical, and avionics architectures at block-diagram level.

⚡ • Map a scheduled-maintenance programme (A-/B-/C-/D-checks, NDI methods) onto real airframe hardware.
Requirements

❗ • High-school level physics forces, pressures, and basic Newtonian mechanics.

❗ • Comfort with block diagrams and simple engineering sketches.

❗ • No prior aerospace coursework required the first two lessons rebuild the necessary foundations.

❗ • No specific CAD or simulation software is required; concepts are shown through animated visuals.

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