The founder of Tesla Motors Elon musk has managed to excite all the tech website this morning with a post about a proposed maglev/atmospheric railway system he's dubbed "HyperLoop".
The details are in this blog post- there's a large PDF linked there
To me, it doesn't actually look that revolutionary- there's been many proposals for "trains" in vacuum tubes in the past. Usually maglev. His sytem, in common with others, seems to have the usual failure to even consider how points would work.
He's also suggesting linear acceleration of 1g- that is, 9.8ms^2. That's a 0-60 time of 2.7s.
He's suggesting max lateral acceleration of 0.5g- what's the maximum allowed on conventional trains?
He gives no idea as to what braking rate would be required
The details are in this blog post- there's a large PDF linked there
When the California “high speed” rail was approved, I was quite disappointed, as I know many others were too. How could it be that the home of Silicon Valley and JPL – doing incredible things like indexing all the world’s knowledge and putting rovers on Mars – would build a bullet train that is both one of the most expensive per mile and one of the slowest in the world? Note, I am hedging my statement slightly by saying “one of”. The head of the California high speed rail project called me to complain that it wasn’t the very slowest bullet train nor the very most expensive per mile.
The underlying motive for a statewide mass transit system is a good one. It would be great to have an alternative to flying or driving, but obviously only if it is actually better than flying or driving. The train in question would be both slower, more expensive to operate (if unsubsidized) and less safe by two orders of magnitude than flying, so why would anyone use it?
To me, it doesn't actually look that revolutionary- there's been many proposals for "trains" in vacuum tubes in the past. Usually maglev. His sytem, in common with others, seems to have the usual failure to even consider how points would work.
He's also suggesting linear acceleration of 1g- that is, 9.8ms^2. That's a 0-60 time of 2.7s.
He's suggesting max lateral acceleration of 0.5g- what's the maximum allowed on conventional trains?
He gives no idea as to what braking rate would be required
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