Earlier quoted context omitted.
> Some colleagues of mine also did a short feasibility assessment of the original white paper, and came to some similar conclusions Likewise. It sounds like above-surface (on Earth) is probably unfeasible given (a) security and (b) thermal concerns. For security, we just contemplated debris from the track (or a bullet from an errant rifle) puncturing the tube. Hyperloop One is testing an 3.3m diameter and 500m long t…
sigh another "deadly wall of air" theory ala Thunderf00t? Hasn't this been debunked already? "A little bit of physics is a dangerous thing." * A bullet or piece of debris would likely leave a hole much smaller than the diameter of the tube. A breach 1/10th the diameter of the tube will admit 1/100ths as much the air. * Even if there was a whole-tube breach, the "wall of air" will rapidly slow down and smear out into…
Just watched one of his videos on this--interesting and thank you for the pointer. Agree with you on his overstating the deadliness of pressure pulses. 30 kg of TNT is a lot of energy, certainly enough to knock your infrastructure out of commission for a couple days. The "everyone dies if the tube is punctured" argument is hyperbolic, though.
The materials science problem is the thermal expansion. And not the longitudinal one that Thunderf00t mentions. It's the transverse expansion. If these are above ground, the top will heat up relative to the bottom. That's a nasty problem to solve while maintaining the structural integrity to keep a giant vacuum with speeding capsules in place.