These mechanical structures have engines powerful enough to pull a human into them. They keep us safe in the air, but on rare occasions they can suck a person in and tear them apart!
The world was shaken recently with the news that a man was pulled into the engine of a plane. This Engines have gravitational powers beyond our imagination. So, unfortunately, it is not impossible to get sucked into an airplane engine.
If we were to stand in close proximity at a time when the plane was taking off, we would probably this is a scary picture It will only be a matter of time before we encounter. So how and under what circumstances can this happen?
Aircraft engines suck in large amounts of air when they are started, even when they are not in motion.
The video above includes the news in question. Jet engines use a compressor to draw in air. These compressors operate approximately It has a capacity of 1.2 million tons of air pulling And it is more powerful than we can even imagine. This suction power can be effective enough to lift and suck an adult human in, even if the engines are idling.
Among objects sucked in by aircraft engines maintenance vehicles, ramp equipment, food and even birds is available. However, the likelihood of such a situation occurring often depends on how well safety protocols and precautions are followed. So this is not something that happens every moment.
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Entering the gravitational field of an airplane’s engine does not create a scenario where the outcome will be good.
Therefore, to avoid such dangers, it is vital to comply with the safety measures set in airports and similar places. Grumman A-6 Intruder, Among the US aircraft, it is one of the most well-known for these disasters; 737s, L-1011s and DC-10s have a similar reputation among airlines around the world.
If we look at such a scenario, it does not seem possible for a person to survive, and those who survive lose a limb while being rescued with difficulty. The reason why a person cannot survive being sucked into an airplane engine is because It is basically based on the operating principles of the jet engine. Therefore, staying closer than the specified distance to the aircraft engine may lead to these dangers.
So what exactly is this safe distance?
The blades in the aircraft’s engine rotate every second. They spin quickly, usually between 1,000 and 20,000 times per second, to push 1.2 million tons of air into the engine. Even though these knives are not sharp, their high speed is reason enough to make them deadly. So when a person is sucked into an airplane engine, the first thing that will happen to them is that these blades will try to break them into millions of tiny pieces.
The safe distance required to stay away from these engines varies depending on the size of the aircraft and the power of the engine. For example, when a Boeing 737-800 is powered by twin CFM International CFM56 engines, the minimum safe distance is approximately 4.2m while being determined as; Minimum safe distance when Global 7000 aircraft powered by dual GE Passport engines 1.67m is determined as .
Since each aircraft has its own minimum safe distance, it is difficult to use a general rule or estimate to determine distance.
This information is usually found in the aircraft’s maintenance log. In civil aviation, the minimum safe distance is usually determined by a series of cones. is displayed to avoid misjudging the distance.
The cones must also be kept at the minimum safe distance to prevent them from being sucked into the engine. placed a little further away, so that a person who accidentally enters this area will not experience problems. However, to ensure safety, entering the conical area should be avoided in all cases.
To find out the exact rules that determine this safe distance for a particular situation or airport, check the relevant airport or It is best to refer to the air carrier’s instructions. In this regard, specific and up-to-date information, local regulations and aviation rules must be taken into account.
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