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Is hyperloop faster than Maglev?

Background on Maglev Train, Vactrain, Hyperloop They are even faster than regular maglev trains, but are even more expensive to build. Hyperloops are a proposed type of transportation that would use a low-pressure tube to send people or cargo through a tube at high speeds.



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China's Shanhai Maglev train is currently the world's fastest, able to hit 311 mph with a top operating speed of 268 mph. As proposed, the Hyperloop would more than double that speed.

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That's certainly what the eccentric CEO of SpaceX, The Boring Company, and Tesla wants. We all know that Musk is prone to over-exaggerating projections and targets. But in theory, the Hyperloop is capable of achieving 760 mph. And that would automatically make it the fastest means of transport in the world.

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This technology is based on the concept of magnetic levitation, which uses magnets to suspend the pod and propel it forward. This makes the Hyperloop TT much faster than the bullet train, which has a maximum speed of 200-300 miles per hour.

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As noted above the Maglev trains are capable of traveling at speeds nearly twice as fast as the bullet trains. However, the use of such extreme speeds in commercial travel seems unlikely. Whereas Maglev trains travel at speeds of up to 400 or 600kph, bullet trains travel at a modest 320kph.

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Japan: L0 Series Maglev (374 mph) Although not yet in regular service, this Japanese train, which is currently being developed and tested by the Central Japan Railway Company (JR Central), holds the land speed record for rail vehicles, clocking in at 374 mph.

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Hyperloop is a futuristic transportation system that resembles a supersized version of a pneumatic tube at the drive-through window of a bank. Here's how it would work. People hop into a pod, which would travel up to 760 miles per hour inside a tube. That's a whisker shy of breaking the sound barrier.

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A ground effect train is a conceptualized alternative to a magnetic levitation (maglev) train. In both cases the objective is to prevent the vehicle from making contact with the ground.

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Maglev trains require very straight and level tracks to maintain high speeds. This necessitates extensive viaducts and tunneling, making construction costly.

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As for the fastest speeds ever reached by a train, the honour of fastest train in the world goes to the L0 Series SCMaglev in Japan. On its test track this Japanese maglev train reached a top speed of 603 km/h or 375 mph.

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Trenitalia's Paris to Milan route was first introduced in December 2021, serviced by Hitachi Rail's ETR1000. This super high speed train travels at 300km/h - with the ability to go400km/h if not limited by track regulations - making it the fastest train in Europe.

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Maintaining correct distance between train and guideway is not a concern (Lee, 2006). The drawbacks are that sufficient speed needs to be built up in order for the train to levitate at all. Additionally, this system is much more complex and costly to implement.

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Maglev trains are “driven” by the powered guideway. Any two trains traveling the same route cannot catch up and crash into one another because they're all being powered to move at the same speed. Similarly, traditional train derailments that occur because of cornering too quickly can't happen with Maglev.

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