A compressor draws in 0.1 m/s of air at atmospheric conditions of 1.013 bar and 22°C and delivers it to a large receiver in which the air stabilises at a temperature and pressure 28°C and 310 kPa...


A compressor draws in 0.1 m/s of air at atmospheric conditions of 1.013 bar and 22°C and<br>delivers it to a large receiver in which the air stabilises at a temperature and pressure 28°C<br>and 310 kPa gauge.<br>The air then discharges back to atmosphere through a converging diverging nozzle located<br>in the side of the tank. Ignoring losses in the nozzle.<br>Determine the:<br>i. Mass flow of air entering and leaving the receiver.<br>ii. The pressure, temperature and velocity at the throat.<br>iii. The throat diameter of the nozzle.<br>For air take R = 287 kJ/kg.K and y = 1.4<br>Isentropic Flow tables are needed for use with this question.<br>

Extracted text: A compressor draws in 0.1 m/s of air at atmospheric conditions of 1.013 bar and 22°C and delivers it to a large receiver in which the air stabilises at a temperature and pressure 28°C and 310 kPa gauge. The air then discharges back to atmosphere through a converging diverging nozzle located in the side of the tank. Ignoring losses in the nozzle. Determine the: i. Mass flow of air entering and leaving the receiver. ii. The pressure, temperature and velocity at the throat. iii. The throat diameter of the nozzle. For air take R = 287 kJ/kg.K and y = 1.4 Isentropic Flow tables are needed for use with this question.

Jun 11, 2022
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