PierArg
Guest
and think that the load losses vary with the square of the speed!By the way, we touch the myth that when you expand a current this slows down...if it is supersonic, it accelerates even more...
and think that the load losses vary with the square of the speed!By the way, we touch the myth that when you expand a current this slows down...if it is supersonic, it accelerates even more...
:finger:: finger: finger:..."locked" (choking), and the whistle is remarkable. . .
It is difficult to understand whether it is a wave of discontinuity of pressure (explosion) or a real supersonic bang.We have supersonal jets in the workplace
their noise is covered by much more intense others, but I happened to hear a "bang" at the moment when the jets are lit.
lasts a moment, then turning into a continuous whistle. but, at least in my opinion, it is true.
I'll see if I have a video of the test at the bar, but I doubt it's public.
the speed of sound in a fluid at the pressure p and density rho can calculate it asthe sonic speed of steam water is 650 m/s? ? ?
Considering that the fluid was hypothesized ideal (incomprehensible, absence of losses) would speed be lower? ?
possiamo trascurare cdc???energy conservation equation? this time in thermal form though:
cdc + gdz + dh = dq - dqa
applied between the free water fur and the vapour outlet duct. We consider the system already in balance, that is to the pressure and temperature of operation. from the tables of the steam that I have, at 6 barg (7 bara) I have a saturation temperature of 165 °c (as it turns out to you).
dz = 0 for aeriforms are usually overlooked the differences in quota
dc = 0 (you may consider the output speed on the section but for now we say it is not known)
dh = variation of entalpia, which in this case coincides with the ethalpy of vaporization, which from the tables in these conditions is worth 2066 kj/kg.
dq = heat transferred to water
dqa = heat loss that does not go into the fluid, it is losses for convection and irradiation to the environment, conduction on the walls of the machine, etc.
suppose that dqa = 0.1dq
multiplying both members by course (m) you should get
mdh = p
m = p/dh = (2,4*0,9)/ (2066) = 3,76 kg/h
very similar to yours!
for the tube... yes, at the same external diameter you find tubes of different thickness! plays between steam speed (some tens of m/s) and its resistance to find the appropriate thickness!
What could happen if mach>1? ? in the end also in the steam plants are used a convergent divertenge to have expansion of the steam from 250 bar to 0,5 bar....li that happens to me seems very strange, that from 6 bar to 0.8 bar I reach the sonic conditions...to the end the environment is 1bar, I would be in trans-sonic environment even if I did not use this tube venturiWe have supersonal jets in the workplace
their noise is covered by much more intense others, but I happened to hear a "bang" at the moment when the jets are lit.
lasts a moment, then turning into a continuous whistle. but, at least in my opinion, it is true.
I'll see if I have a video of the test at the bar, but I doubt it's public.