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Is plane turbulence worse at night?

Turbulence intensity increases as convective updraft intensity increases. In weather conditions when thermal activity can be expected, many pilots prefer to fly in the early morning or in the evening when the thermal activity is not as severe.



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Nighttime or morning flights are statistically better for turbulence, compared to those in the day.

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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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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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While it may feel unnerving sitting on a bumpy flight traveling hundreds of miles per hour at thousands of feet in the air, there's no reason to panic or worry. Turbulence is unavoidable. It's experienced on almost every flight to some degree (usually light).

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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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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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A poll taken on A Fly Guy's Cabin Crew Lounge, the largest network of airline staff on social media, revealed that most airline crew not only like turbulence, but they also enjoy it! That's a comforting thought to think about the next time you're worried when your plane starts shaking. '

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When an aircraft experiences turbulence, the plane can drop or change altitude suddenly. This is why pilots always caution passengers to buckle up and stay seated when they are experiencing flight turbulence. The sudden movements put passengers at risk.

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Pilots know that flying safely in threatening turbulence requires slowing to VA, the maneuvering speed. This assures that the airplane will stall before its limit load factor can be exceeded. Such a stall is momentary and protects the structure against damaging loads.

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In short, pilots are not worried about turbulence - avoiding it is for convenience and comfort rather than safety. In the best circumstances, pilots can forecast where turbulence is and steer clear of it. “We use met data and forecasts for jet streams to avoid potential areas,” the pilot said.

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Airplanes are built very sturdily. In fact, there's a lot of countermeasures built into the engineering of an airplane much like a car has different things to make a smooth ride on a bumpy road, airplanes have so many parts to it that's built into the aircraft to be able to deal with and safely handle the turbulence.

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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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A pilot encountering turbulence has three options: change altitude, alter course, or ride out the roughness. Fighting turbulence with aggressive movement of the flight controls can make a bad situation worse. This is because maneuvering loads, the Gs created by moving the flight controls, are cumulative.

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Periods of turbulence last an average of only 10 to 15 minutes, though it may seem like an eternity. Dr. Chris Manno, a pilot, professor, author, and current Boeing 737 captain for a major U.S. airline, is trained to deal with turbulence, but notes that airplanes are just as primed to take whatever weather is ahead.

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Clear air turbulence forms like pancakes, so changing altitude is a suitable means of avoiding clear air turbulence. These are the main types of turbulence. Another source of turbulence is wake vortex turbulence which comes from an airplane's wings slicing through the air.

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