Q3- Air flows from a reservoir and enters a uniform pipe with a diameter of 0.05 m and length of 10 m. The air exits to the atmosphere. The following conditions prevail at the exit: P2 = 1bar, temperature T2 = 27°C and M2 = 0.9. Assume that the average friction factor to be f = 0.004 and that the flow from the reservoir up to the pipe inlet is essentially isentrópic Estimate the total temperature and total pressure in the reservoir under the Fanno flow model. %3D M2 0.9 D-0.05 m] L=10 m Po=! To=?C T2-27°C P2=1 Bar]

Elements Of Electromagnetics
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Q3- Air flows from a reservoir and enters a uniform pipe with a diameter of 0.05 m and
length of 10 m. The air exits to the atmosphere. The following conditions prevail at the
exit: P2 = 1bar, temperature T2 = 27°C and M2 = 0.9. Assume that the average friction
factor to be f = 0.004 and that the flow from the reservoir up to the pipe inlet is
essentially isentropic Estimate the total temperature and total pressure in the reservoir
under the Fanno flow model.
%3D
M2 0.9
D-0.05 m]
L=10 m
Po=?
To=C
T2-27°C
P2=1|Bar]
Transcribed Image Text:Q3- Air flows from a reservoir and enters a uniform pipe with a diameter of 0.05 m and length of 10 m. The air exits to the atmosphere. The following conditions prevail at the exit: P2 = 1bar, temperature T2 = 27°C and M2 = 0.9. Assume that the average friction factor to be f = 0.004 and that the flow from the reservoir up to the pipe inlet is essentially isentropic Estimate the total temperature and total pressure in the reservoir under the Fanno flow model. %3D M2 0.9 D-0.05 m] L=10 m Po=? To=C T2-27°C P2=1|Bar]
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