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Do planes fly above storms?

What happens when en route flights encounter thunderstorms? 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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Do Flights Get Cancelled Due to Thunderstorms? Yes, this can happen. In fact, many flights are cancelled regularly around the world due to thunderstorms making it dangerous or impossible to take off.

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Ultimately, it is usually perfectly safe for planes to fly in storms. Today's aircraft, especially big passenger airplanes, are designed to deal with lightning strikes, rain, and other conditions. Plus, pilots haveextensive training in how to handle storms and can be trusted to make the right call.

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Rain is just water, no matter the pressure. Modern aircraft can generate lift regardless of the heaviness of the rain. Planes can and will take off and land in the rain. The only real problem with heavy rainfall is the decrease in visibility for the pilots.

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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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Answer: Pilots use onboard weather radar to remain clear of thunderstorms during day and night operations. Lightning is actually easier to see at night, which shows the pilots the location of the storm.

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What can cause a cancellation? Flights may be canceled due to wind, precipitation, fog or low visibility, lightning, low clouds, or storms.

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Can a Thunderstorm Cause a Plane to Come Down? It's very unlikely for thunderstorms to bring planes down, and planes are able to be struck by lightning without suffering serious damages. In fact, rain, hail, and wind are more dangerous to planes than thunder and lightning.

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Aircraft are designed to fly in almost all environmental conditions. However, some events, such as blizzards, thunderstorms, or extreme winds, can result in delays and cancelations. Poor visibility can significantly limit departures and arrivals at airports.

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Planning flights, checking the weather, and anticipating changes are all keys to being a safe pilot. If a pilot doesn't plan the flight properly, gets into bad weather, or doesn't anticipate issues then airplane crashes can happen.

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Your chances of being involved in a fatal plane crash are incredibly small – around 1 in 11 million, according to Harvard researchers. While your odds of being in a plane accident are about 1 in 1.2 million, survivability rates are about 95.7% – so the odds are with you no matter how you look at it.

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Turbulence might occur during your flight in rainy weather due to the presence of different air masses mixing together and causing disturbances aloft. Warm and cold air masses interacting with each other can result in turbulent conditions high in the sky, making your flight potentially more uncomfortable.

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While thunderstorms can be quite visible when they are flashing and banging, they don't display either of these characteristics during certain stages. In the case of commercial aircraft, pilots will utilize a weather radar. Information regarding thunderclouds will be displayed on their navigational displays.

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Ultimately, it is usually perfectly safe for planes to fly in storms. Today's aircraft, especially big passenger airplanes, are designed to deal with lightning strikes, rain, and other conditions. Plus, pilots haveextensive training in how to handle storms and can be trusted to make the right call.

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These cloud-borne updrafts and downdrafts result in rapid and unpredictable changes to the lift force on the wings of an aircraft. More or less lift and the difference between these changes is what causes the aircraft to lurch and jump about during flight, or turbulence as it is called within the industry.

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The lifting of the warm air by the sloping frontal surface and friction between the two opposing air masses produce turbulence in the frontal zone. This turbulence is most marked when the warm air is moist and unstable and will be extremely severe if thunderstorms develop.

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