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4 0 5 . 0 1

4 0 5 . 0 1. Wake Turbulence. Wake Turbulence.

Antony
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4 0 5 . 0 1

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  1. 4 0 5 . 0 1 Wake Turbulence

  2. Wake Turbulence • As the lift producing airfoil passes through the air, the air rolls up and back towards each wing tip producing two distinct counter rotating vortices, one trailing each wing tip. The intensity of the turbulence within these vortices is directly proportional to its weight and inversely proportional to its wingspan and speed of the airplane.

  3. Intensity of Wake Turbulence • The heavier and slower the airplane the greater intensity of air circulation in the vortex cores. The most violent vortices are generated during take-off and landing.

  4. Air Density • In Cold air the vortices can be expected to be more severe.

  5. Vortex Strength • The greatest vortex strength occurs under conditions of clean configuration, high weight and slow speed.

  6. Factors That Effect Vortex Strength • Configuration of the airplane • Flaps • Undercarriage • Location of engine • Tail Configuration

  7. Confirmation Stage NOTE: You must use the buttons in the Confirmation Stage

  8. Airmanship Wake Turbulence Let's try a few review questions on Airmanship: Question #1 - What factors effect vortex strength? A Flaps B Undercarriage C Tail configuration D All the above

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  13. Airmanship Wake Turbulence Let's try a few review questions on Airmanship: Question #2 - When does the greatest intensity of wake turbulence occur? A High altitude B In the circuit C Take off and landing D Taxiing

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  18. Hazards • Vertical gusts encountered when crossing laterally through the vortex can impose structural loads as high as 10 gs on a small airplane. The combination of upward and downward gusts has been estimated as high as 80’/sec. Most small airplanes are designed to handle 30’/sec

  19. Structural Damage • There is a possibility of structural failure when an aircraft crosses a pair of vortices. The strong up and down forces combined and the pilot’s attempt to counteract them will result in loss of control and airframe design limits being exceeded.

  20. Vortex Generation • Vortex generation starts at rotation (the raising of the nose from the runway) and increases in intensity at lift off when the full weight of the aircraft is sustained by the wings. • It ends when the airplane touches down.

  21. Vortex Generation • Vortices may trail as far as 10 to 16 miles depending on the airspeed of the aircraft. • Wake turbulence usually dissipates after two minutes. But can remain as long as five minutes.

  22. Crosswind • Vortices tend to move laterally outward over the ground at a speed of about 5 knots. This means that the vortices may position themselves parallel to the runway and constitute a hazard to aircraft operating in that area. Crosswind effects wake turbulence. The stronger the cross wind, the more vortices get blown to the side.

  23. Confirmation Stage NOTE: You must use the buttons in the Confirmation Stage

  24. Airmanship Wake Turbulence Let's try a few review questions on Airmanship: Question #3 - What amount of force can be expected passing through a vortice? A As high as 10 g B As low as 10 g C Approximately 30 N D Approximately 20 N

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  29. Airmanship Wake Turbulence Let's try a few review questions on Airmanship: Question #4 - What effect does crosswind have on vortices? A Increased intensity B Increased diameter C Decreased intensity D Blown to side

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  34. Wake Turbulence Avoidance • During Flight Although wake turbulence is most likely to be encountered during arrival and departure, it can be a hazard at cruising altitudes as well. Avoid crossing behind and less than 1000’ below the flight path of large, heavy aircraft especially at low altitudes.

  35. Wake Turbulence Avoidance • During Taxi Stay well behind large aircraft that are taxiing or maneuvering on the ground. As well, avoid going behind aircraft doing a run-up. Avoid taxiing below a hovering helicopter (the down wash is significant and hazardous).

  36. Wake Turbulence Avoidance • During Take-off Stay up wind of a large airplane. This action and normal climb should keep you above the descending vortices of the preceding airplane. When following an aircraft that has just landed plan to be airborne beyond the point of touchdown of that aircraft. For an intersecting runway, plan to be airborne before you cross the intersection.

  37. Wake Turbulence Avoidance • During Landing When following a heavier aircraft that has just taken off, plan to touch down before the rotation point. When following an aircraft that has just landed plan to touch down beyond the point where the preceding aircraft touched down.

  38. Wake Turbulence Avoidance • Above All Avoid a long dragged in approach. The largest number of dangerous encounters with wake turbulence has been in the last half mile of approach.

  39. ATC Advisement • ATC cannot guarantee that wake turbulence will not be encountered. When the ATC advises, “CAUTION WAKE TURBULENCE”, he is warning you of the possible existence of wake turbulence.

  40. Avoidance Responsibility • It is the sole responsibility of the pilot in command (PIC). Even though you have received a clearance to land or take-off, if you believe it is safer to wait then ask the controller to do so.

  41. Confirmation Stage NOTE: You must use the buttons in the Confirmation Stage

  42. Airmanship Wake Turbulence Let's try a few review questions on Airmanship: Question #5 - What are the dangers of vortices during flight? A No Effect B Hazardous C Little effect D None of the above

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  47. Airmanship Wake Turbulence Let's try a few review questions on Airmanship: Question #6 - Who has the responsibility to avoid wake turbulence? A ATC B PIC C FSS D Both A and B

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