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Can planes take-off in 60 mph winds?

What's the strongest wind passenger jets can fly in? 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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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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While high winds (a crosswind above 40 mph and a tailwind above 10 mph) can occasionally prevent planes from taking off or landing on time, winds won't put your flight in any danger.

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Severe turbulence can cause a plane to drop so suddenly that pilots temporarily lose control. But, again, that's not enough to crash the plane. That's not to say it's never happened. In 1966, human error and turbulence combined to bring a plane down over Mount Fuji.

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While high winds (a crosswind above 40 mph and a tailwind above 10 mph) can occasionally prevent planes from taking off or landing on time, winds won't put your flight in any danger.

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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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How to Deal With Turbulence Anxiety
  1. Trust the Flight Crew. ...
  2. Choose the Right Seat. ...
  3. Stay Informed with Turbulence Forecast Tools. ...
  4. Practice Relaxation Techniques. ...
  5. Distract Yourself. ...
  6. Seek Professional Help If Necessary. ...
  7. Understand the Nature of Turbulence.


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DENVER (CBS4) – Colorado and the Rocky Mountains are among the worst areas for turbulence in the United States. It's a problem that injures dozens of passengers and crew members nationwide every year.

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Winter has strong winds and blizzards, and summer's hot heat can create unstable air, thunderstorms, and tropical storms. That means flying during the holidays often means more turbulence than other times of the year. So if possible, avoid flying between December and February or June and August for a smoother flight.

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It might be surprising to learn that turbulence is actually worse in the daytime. In the early morning and night time, wind speeds typically reduce, and thunderstorms clear up. Avoid turbulence and catch up on some sleep by choosing flights with an early morning or red-eye departure!

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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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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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The middle seats are safer than the window or aisle seats, as you might expect, because of the buffer provided by having people on either side, professor Drury said to the Conversation. He noted that sitting next to an exit row can ensure a quick exit if there is an emergency, except in case if there is a fire.

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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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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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In the event of an engine malfunction, the recognition of a significant abnormality, or an ATC instruction to stop the aircraft during the take off roll, transport aircraft in Performance Category 'A' should be able to safely reject the take off if the decision to do so is made at a speed not greater than the correctly ...

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Not very often, but working at a large airport just because of scale it will still be fairly common. I would say you're looking at maybe 0.5% of our flights that are flying without passengers, if even that. The reasons vary, but most commonly it's either re-positioning or tech flights.

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The stalls that pilots practice are aerodynamic stalls not engine stalls. It happens when the critical angle of attack is exceeded. [Typically the nose is pitched up too much is what it means]. It results in airflow separation that means that the wing no longer is generating any [significant] lift.

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Any plane can experience turbulence, but larger planes weigh more and don't feel the impact of wind changes as much as a smaller plane. Specifically, the Airbus A380 handles turbulence very well! The A380 is a large plane mainly used for international flights.

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Ask any frequent flier in the United States, and they will likely point to Denver (and Salt Lake city) as a common place for a turbulent takeoff and landing. This is due to its proximity to the Rockies and to US highest peak: Mount Elbert's 4,400 m (14,000 ft).

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