Air is allowed to flow from a tank with temperature of 69.8 °F and with pressure of 49.3461 atm through a pipe. It was measured that flow rate is 2.2046 lbm/sec. At some point on the tube static pressure pressure was measured to be 22501.845 mmHg. Assume that process is isentropic and neglects the velocity at the reservoir, calculate the pipe diameter (answer in whole number, unit is mm). Assumed that the ratio of specific heats is 1.4.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Air is allowed to flow from a
tank with temperature of
69.8 °F and with pressure of
49.3461 atm through a pipe. It
was measured that flow rate is
2.2046 lbm/sec. At some point
on the tube static pressure
pressure was measured to be
22501.845 mmHg. Assume that
process is isentropic and
neglects the velocity at the
reservoir, calculate the pipe
diameter (answer in whole
number, unit is mm). Assumed
that the ratio of specific heats is
1.4.
Transcribed Image Text:Air is allowed to flow from a tank with temperature of 69.8 °F and with pressure of 49.3461 atm through a pipe. It was measured that flow rate is 2.2046 lbm/sec. At some point on the tube static pressure pressure was measured to be 22501.845 mmHg. Assume that process is isentropic and neglects the velocity at the reservoir, calculate the pipe diameter (answer in whole number, unit is mm). Assumed that the ratio of specific heats is 1.4.
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