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Is there a lot of turbulence flying in rain?

Rain may not directly cause turbulence, but the atmospheric conditions it creates can lead to increased turbulence. Being aware of the connection between rain and turbulence can help alleviate anxiety for fearful flyers.



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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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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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The worst seats on an airplane for turbulence are the jump seats in the back of the plane, where the flight attendants sit, followed by the passenger seats towards the back of the aircraft.

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Severe turbulence, he added, is “quite rare — only 0.1% of the atmosphere at 40,000 feet has severe turbulence in it, so if you're on a plane it's very unlikely that your plane will hit that 0.1%.” “However, given the number of planes in the skies, one of them will.

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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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Jet aircraft can safely fly over thunderstorms only if their flight altitude is well above the turbulent cloud tops. The most intense and turbulent storms are often the tallest storms, so en route flights always seek to go around them.

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Before departure, call 1-800-WX-BRIEF for latest weather and file flight plans. Miscellaneous Items: Text Notam Information.

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

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For context, 87% of flights arrived on time during the same period last year, and less than 2% of flights were canceled. So how do you improve your odds of traveling on one of the three-quarters of flights that arrives in good time?

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While we mostly try to avoid any sort of turbulence to give passengers the smoothest ride possible, we worry mostly about turbulence at or above moderate. We try to counter turbulence by flying around known areas or change altitude.

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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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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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Winter has higher winds, blizzards and more clear air turbulence. Spring has fast-moving fronts and high winds, causing severe squall lines. Each of these events can cause turbulence.

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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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Which Plane Handles Turbulence Best? The bigger the plane, the better! 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!

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It's almost unheard of for turbulence to cause a crash, but it can lead to costly repairs for carriers. Usually, the damage is to cabin components like seats and overhead bins when luggage falls out or people hit them.

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

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