Canned air is unexpectedly supersonic [video]
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https://seismo.berkeley.edu/~manga/kieffer1989.pdf (see figure 26)
In choked flow, you don’t need a very high pressure ratio to go sonic. You only need P_exit/P_reservoir <= 0.582. That is, the pressure of the reservoir (the bottle in this case) only needs to be 1.72 times greater than the exit pressure (ambient).
If you've ever used a compressed air gun from a compressor or at a tire fill station, it's also very likely choked flow, sonic exit speed.
It only takes a chamber with about 30 psi to get supersonic flow!
https://en.wikipedia.org/wiki/Byford_Dolphin#Diving_bell_acc...
When you think about it it's hard for air to push itself faster than the speed of sound since the speed of sound is literally the speed that a wave of compression in air will propagate.
So how can it go faster than the max speed a wave of compression can travel at when it's powered by that? Well compressed air has a much higher speed of sound. So it's accelerated to the below speed of sound inside the nozzle and on exit it's now faster than the speed of sound, not due to further acceleration beyond the speed of sound but due to the speed of sound suddenly dropping in the lower pressure.
I suspect this is occurring because the (sonic) flow through the nozzle cools as it expands, therefore the speed of sound drops, making the same flow now supersonic in the cooled gas.
>For a given ideal gas the molecular composition is fixed, and thus the speed of sound depends only on its temperature. At a constant temperature, the gas pressure has no effect on the speed of sound, since the density will increase, and since pressure and density (also proportional to pressure) have equal but opposite effects on the speed of sound, and the two contributions cancel out exactly.
https://en.m.wikipedia.org/wiki/Speed_of_sound#Dependence_on...
The temperature difference does make sense for the same reasons here though!
I don't think the difference in speed of sound will have much effect in any case.
Of an ideal gas
[0]https://en.wikipedia.org/wiki/Choked_flow
Edit: I got excited to reply before actually reading the wiki I linked. Looks like I was close, with pressure ratios between 1.7 and 2.05 resulting in choked flow, depending on the gas.
I think my brain has reached a point that it actively avoids clickbait, extravagant, dramatic titles and thumbnails. To me this HN title is much better because it says "supersonic" and now I immediately know what the video is about, as opposed to "unintuitive discovery".
Am I the only one who is expericing this behavior?
And if not, is it finally time to stop using clickbait titles and thumbnails?
Some interesting videos on the extremes one must go to when doing high-precision machinery.