Q2) In the Figure (1), air flow in duct at mass flow rate of 495 kg/min, calculate: 1. The diameter of the pipe 2. The length of the pipe 3. Pressure and temperature of air at the exit of the pipe 4. Stagnation pressure losses (P,2-Po1) 5. Velocity of air 6. Change in entropy (Assume : the coefficient of friction for the pipe 0.005) In the inlet : Mi-0.15 Tj=27 °C Р3 0.3 Мра At the exit М-0.5

Elements Of Electromagnetics
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Q2) In the Figure (1), air flow in duct at mass flow rate of 495 kg/min , calculate :
1. The diameter of the pipe
2. The length of the pipe
3. Pressure and temperature of air at the exit of the pipe
4. Stagnation pressure losses (Po2–Po1)
5. Velocity of air
6. Change in entropy
(Assume : the coefficient of friction for the pipe 0.005)
At the exit
In the inlet :
M1=0.15
Tj=27 °C
Р- 0.3 Мра
М-0.5
Figure(1)
Transcribed Image Text:Q2) In the Figure (1), air flow in duct at mass flow rate of 495 kg/min , calculate : 1. The diameter of the pipe 2. The length of the pipe 3. Pressure and temperature of air at the exit of the pipe 4. Stagnation pressure losses (Po2–Po1) 5. Velocity of air 6. Change in entropy (Assume : the coefficient of friction for the pipe 0.005) At the exit In the inlet : M1=0.15 Tj=27 °C Р- 0.3 Мра М-0.5 Figure(1)
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