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Where is the windiest place to land a plane?

Flying into Wellington? Make sure that seatbelt is tightly fastened. Wellington, New Zealand is considered to be the windiest city on the planet. This is good for the local wind turbines and dramatic hair-blowing photoshoots, but not so great for passengers aboard planes landing at Wellington International Airport.



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With this in mind, horizontal winds (also known as “crosswinds”) in excess of 30-35 kts (about 34-40 mph) are generally prohibitive of take-off and landing.

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As the aircraft approaches the runway, the pilot uses the rudder to point the aircraft's nose into the wind, counteracting the crosswind and maintaining the desired flight path. This means the aircraft will be angled slightly sideways, or 'crabbing' as it comes in for landing.

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Routes with the most turbulence
  • New York to London. One of the most popular routes which experience turbulence is flying from New York to London (and also London to New York). ...
  • Seoul to Dallas. ...
  • Flying into certain airports near the equator. ...
  • Flying into Reno, Nevada. ...
  • London to South Africa.


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As the plane descends into ground effect, it may actually accelerate if the engines are producing enough thrust, since in ground effect the plane requires much less power to keep flying. Power from the engines will translate into speed, if not height.

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While landing, speed is largely affected by the aircrafts current weight, commercial airplanes typically land between 130 and 160 mph (112 to 156 knots).

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At night time airports are usually pretty easy to spot. Many airports have extremely well-lit runways and apron areas. The approach lighting system is custom made to make it easy to navigate toward the runway centerline in the dark too!

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Wind is an important consideration for pilots during a flight, but it may not only be for the reasons you're thinking. Aircraft always try to land and take off into the wind in order to minimize the speeds needed to get airborne or come to a stop.

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Aeroplanes are made to run on the runway before take off, so that they acquire the necessary lift.

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With this in mind, horizontal winds (also known as “crosswinds”) in excess of 30-35 kts (about 34-40 mph) are generally prohibitive of take-off and landing.

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Flight cancellations can occur due to various wind speed thresholds set by airlines. Typically, takeoff and landing are restricted when wind speeds exceed 30-35 knots (35-40 mph). However, specific limits may vary depending on the aircraft type, airline policies, and airport guidelines.

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The bumps you experience during take off, landing and while clearing clouds is a caused by either of the two turbulence types. Add to that the speed of the airplane cutting through dense air at lower altitudes, and some bumps are expected as well as entirely normal.

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But extending the flaps also increases drag and slows the plane down, thereby reducing the control over the aircraft that you want. So to counteract that, pilots will throttle up to maintain speed and control.

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Wake turbulence can cause a plane to vibrate The bigger the plane, the greater the wake. Like crosswinds, pockets of unstable air can force the pilot to react to keep the plane stable. These sudden movements cause the plane's wings to flex again, creating vibrations throughout the aircraft.

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There is no single maximum wind limit as it depends on the direction of wind and phase of flight. A crosswind above about 40mph and tailwind above 10mph can start to cause problems and stop commercial jets taking off and landing.

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USE PARTIAL FLAPS: In a crosswind or gusty situation, full-flap landings can be more trouble than they're worth. This is because fully extended flaps present a larger surface area for that crosswind to affect, blowing you around. Flaps catch the wind just like a kite.

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While no aircraft can avoid turbulence, passengers may feel less turbulence in widebody aircrafts, as they're larger and heavier airplanes.

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