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Is flying over the ocean safer than flying over land?

When flying over land, of course it is more likely that there will be more airfields closer to the aircraft at any given time. However, because of lessons learned from its history and the improvements in aircraft and engine reliability, crossing the oceans is deemed as safe as flying over land.



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Takeoff and landing are widely considered the most dangerous parts of a flight.

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It's rare for short-haul flights to Europe to suffer more than a short stretch of light turbulence. Meteorologists inform pilots in advance of bad weather, allowing planes to re-route and avoid the worst. Passengers can get their own predictions on websites such as turbli.com.

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Because of its vast size, crossing the Pacific Ocean requires a staggering quantity of fuel. However, most commercial aircraft do not fly directly over the Pacific Ocean; instead, they choose what are known as 'curved paths'. These paths offers a faster, more efficient route given the curved nature of the earth.

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Most commercial airlines that travel between East Asia and the Americas avoid flying over the Pacific Ocean due to high costs and safety concerns, such as the risk of flying during stormy weather.

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Most flights are intended to spend as little time as possible over water, since storms are more common over the ocean than on land. An aircraft would not be safe to fly over the Pacific Ocean due to the stormy weather and frequent lightning strikes that occur there.

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Overwater flights are dispatched with ETOPS requirements in mind to ensure that a diversion airport is always within reach, assuming that the engine failure or shut down doesn't lead to other problems with the aircraft.

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The longest over water route in the world is the stretch between the U.S. mainland and Hawaii. Even between Hawaii and Tokyo there are alternate airports available, such as Midway Island (hence the name “Midway”). Going across the North Atlantic, alternates include Iceland and Greenland.

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Sometimes it's unavoidable to fly through light and moderate turbulence, but rest assured your pilots are working to find smooth air. If they encounter severe or extreme turbulence not forecasted, pilots will quickly climb or descend to a safe and smooth altitude.”

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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. Turbulence-related damage, delays and injuries cost airlines up to $500 million per year.

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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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Are small planes less safe than larger? It might seem that way, but there are other contributing factors. In a nutshell, the size of an airplane is not in any way linked to safety, explains Saj Ahmad, chief analyst at StretegivAero Research.

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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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There is less turbulence over water than over land, because the primary cause of turbulence is hot air rising from the ground. Water distributes heat a lot better than soil, making flights over the ocean much smoother.

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An especially insidious form of turbulence has gotten worse because of climate change, according to new research. It's turbulence that forms in cloudless skies that's typically invisible to a plane's radar, called clear-air turbulence. And it's projected to become a bigger problem as the world warms.

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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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