Pipe Flow, Nozzles, Diffusers, and Throttling Devices in 9 Minutes!

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Less Boring Lectures

Less Boring Lectures

Күн бұрын

Пікірлер: 8
@ehsanhosainizadeh4847
@ehsanhosainizadeh4847 Жыл бұрын
wow Excellent!
@sevenpantone
@sevenpantone 19 күн бұрын
If Steady state means mass flow is equal for inlet and outlet, how come only pipe flow uses that if all systems mentioned are in steady state (not transient)? Thank you for your time, videos rock.
@amirkomasi2206
@amirkomasi2206 2 жыл бұрын
Thanks for this video.Can we explaine reducing pressure in throttling process by bernoli's equation?
@seungkyuyang260
@seungkyuyang260 Жыл бұрын
Can you explain why velocity change is neglected in throttling but it is not in nozzles and diffusers?
@Workbrilliantly
@Workbrilliantly Жыл бұрын
Because of the velocity change you can try with yourself if the velocity change is not very high there is no big effect on answer, when you include the problem delta V answer change just a little bit. But for nozzles and diffusers the velocity change is huge
@yasirshah8468
@yasirshah8468 5 ай бұрын
With a constant duct area as in the case of a throttling device, the velocity changes are of essentially of the same magnitude and inconsequential...However, for nozzles and diffusers, the area differential at the device 'entrance' and 'exit' is geometric (several orders) and hence the velocity changes are substantial and cannot be discounted.
@EadoinBurns
@EadoinBurns 11 ай бұрын
the section on throttling has flaws, Pe > Pi
@Jimmy-ok5bt
@Jimmy-ok5bt 10 ай бұрын
No. Pressure drops as it moves through the restriction, due to the flow resistance which causes the fluid to decelerate and lose pressure. Thus Pe < Pi.
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