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Renewable Energy Practice Test: Wind Turbine Aerodynamics
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Avg score: 22% Most missed: “Why is it necessary to have an optimal tip speed ratio (TSR)?”
Wind turbines use aerodynamic forces to extract energy from the wind. The two main aerodynamic forces are drag and lift. Drag applies a force on the body in the direction of the relative flow, while lift applies a force perpendicular to the relative flow.  Aerodynamics determines how much lift and drag forces are generated by the blades, which affect the torque and power output.  When wind flows across the blade, the air pressure on one side of the blade decreases. The difference in air pressure across the two sides of the blade creates both lift and drag. The force of the lift is stronger... Show more
Renewable Energy Practice Test: Wind Turbine Aerodynamics
Time left 00:00
25 Questions

1. Drag is an aerodynamic force acting ______
2. What is an aerodynamic force?
3. How is drag force experienced by the blade reduced in various modern blade designs?
4. When plotting lift vs angle of attack, which of following best describes the shape of the curve?
5. What is lift-to-drag ratio?
6. Why does wind speed increase with height above ground?
7. Which of the following blade designs further increases the efficiency of airfoil blades?
8. Why is a blade twisted along its length rather than its width?
9. What does tip speed ratio (TSR) depend on?
10. What is angle of attack?
11. The upwind side experiences a force that slows the blade.
12. Increased wind tower height and longer blades do not result in an increase in power.
13. What are the two primary aerodynamic forces acting on wind turbine rotors?
14. The airfoil/curve blade designs are affected by drag along its length.
15. Which of the following blade designs is becoming less popular?
16. What is blade element momentum theory?
17. Why is it necessary to have an optimal tip speed ratio (TSR)?
18. Why should longer turbine blades be made of stronger materials?
19. A higher lift-to-drag ratio indicates a higher efficiency.
20. Which of the following is best reason for not using longer blades even though they produce greater output power?
21. Lift is an aerodynamic force acting _______
22. What is tip speed ratio (TSR)?
23. Which of the following is the governing equation for power extraction and calculation? Note that the text in bold denotes a vector quantity.
24. The speed at the tip of the blade is faster than its center.
25. Turbine blades use a/an _______ design.