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Why do planes suddenly drop during turbulence?

Turbulence, which causes planes to suddenly jolt while in flight, is considered a fairly normal occurrence and nothing to fear. The movement is caused by atmospheric pressure, jet streams, air around mountains, cold or warm weather fronts, or thunderstorms, according to The Federal Aviation Administration.



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As the wings of the aircraft pass through pockets of air of differing density or pressure, the amount of lift generated by the wings changes. For a short time, the lift of the wings is less than the weight of the plane and it drops slightly. This is usually not dangerous to the Aircraft.

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Turbulence, associated with thunderstorms, can be extremely hazardous, having the potential to cause overstressing of the aircraft or loss of control. Thunderstorm vertical currents may be strong enough to displace an aircraft up or down vertically as much as 2000 to 6000 feet.

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Turbulence, which causes planes to suddenly jolt while in flight, is considered a fairly normal occurrence and nothing to fear. The movement is caused by atmospheric pressure, jet streams, air around mountains, cold or warm weather fronts, or thunderstorms, according to The Federal Aviation Administration.

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Turbulence is a sudden and sometimes violent shift in airflow. Those irregular motions in the atmosphere create air currents that can cause passengers on an airplane to experience annoying bumps during a flight, or it can be severe enough to throw an airplane out of control. (The pilots) aren't scared at all.

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From a practical point, no, a modern airliner will not lose a wing due to turbulence. Modern airlines are very tough and designed to withstand extreme turbulence. In theory, it might be possible. But to my knowledge, it has not happened to any jet airliner.

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The most important thing to know is that turbulence isn't dangerous. It might be a bit uncomfortable, but your plane is built to handle the worst. Even in the most severe turbulence, your plane isn't moving nearly as much as you think!

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Should you be scared of turbulence? The short answer is no, and rest assured that the pilots know how uncomfortable turbulence can make passengers feel. And know that no aircraft has ever crashed because of turbulence. Turbulence has not caused an airplane to crash, Biddle said.

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For nervous flyers, turbulence can be frightening, especially when it's severe. Some might even think that these strong forces would be enough to break the aircraft. In reality, airplanes, especially large airliners, are built with enough strength to withstand almost all naturally occurring turbulence.

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Even with turbulence, air travel is still the safest option
First, turbulence has not caused an airplane to crash for over 50 years. So, the chances of you being on the first plane to do so in almost half a century are slim to none.

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While pilots can't actually see turbulence, they often know what is coming up, thanks to reports from other planes, weather reports, and radar equipment. However, clear air turbulence (severe turbulence occurring in cloudless areas) can sometimes catch pilots off guard.

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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.

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We humans are much more sensitive to the rate of change, how fast you are going up or down, than the depth of the dip. Turbulence can very rarely cause a change of up to 100 metres, but it is almost always less than 30m.

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Pilots are capable of identifying areas of potential turbulence by using their knowledge of meteorology and weather patterns. One of the simplest ways we avoid turbulence is by avoiding areas with thunderstorms. Convective activity is associated with unstable air, as well as strong updrafts and downdrafts.

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The stronger the wind speed (generally, a surface wind of 20 knots or higher is required for significant turbulence), the rougher the terrain and the more unstable the air, the greater will be the turbulence. Of these factors that affect the formation of turbulence, stability is the most important.

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Routes with the Most Turbulence
  • New York to London.
  • Seoul to Dallas.
  • Flying into certain airports near the equator. There are certain airports which are located close to the equator which means frequent thunderstorms, especially in certain seasons. ...
  • Flying into Reno, Nevada. ...
  • London to South Africa.


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They don't really fall, but can certainly descend and climb very rapidly, and without warning. In severe or extreme turbulence, altitude losses and gains of 1000 feet can happen, but are usually much less.

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When pilots encounter turbulence, the speed is reduced to turbulence penetration speed Vra. This speed varies from aircraft to aircraft and is provided in the aircraft documentation. The speed for Vra changes with altitude until it changes to a constant Mach number.

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At times like this, pilots will slow to a designated “turbulence penetration speed” to ensure high-speed buffet protection (don't ask) and prevent damage to the airframe. We can also request higher or lower altitudes, or ask for a revised routing.

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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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Whichever plane you end up on, opt for a seat where the effects of turbulence are less dramatic. Travelling in the middle of the plane (near the wings and its centre of gravity) ensures a less bumpy ride while a seat at the back will be the most rocky.

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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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