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Can planes fly in heavy rain?

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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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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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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Crosswinds greater than 50-60 km/h may cause airlines to delay or cancel flights. Even lower gusts can trigger flight delays or cancellations if the runways are wet or icy, as stiff winds can reduce a plane's ability to brake on the runway.

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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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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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Turbulence is more commonly associated with cold fronts but can be present, to a lesser degree, in a warm front as well. 4. Wind Shear. Wind shear is the change in wind direction and/or wind speed over a specific horizontal or vertical distance.

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The very simple answer is “Yes” – but there are some exceptions. Most types of aircraft are outfitted with the correct instruments and equipment to take off in the rain from large to small airports. But one of the most important elements of the equation is the qualifications of the pilot.

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Turbulence, caused by rapidly changing wind speeds and directions, can be quite uncomfortable for passengers and may cause anxiety. Severe turbulence within a thunderstorm can not only be unsettling but can also cause damage to the airplane. Another risk associated with thunderstorms is lightning strikes.

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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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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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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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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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Night flying restrictions or night-time curfews, including night flight bans, are any regulations or legislation imposed by a governing body to limit the ground-perceived exposure to aircraft noise pollution during the night hours, when the majority of residents are trying to sleep.

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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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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. As far as how this happens, it depends on where you are in flight.

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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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