2. A gas at 300 K and 1 bar (state 1) flows through an adiabatic compressor and exits at 20 bar and 700 K (state 2). The gas obeys the following equation of state, where a and B are constants. The values are given as a = RT ар v-B=- + P and B = 8 x 10-5 m³. The heat capacity of mol 10-3 m³ K har mol

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter40: Typical Operating Conditions
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Determine the power requirement (in kW) of the compressor if 5 mol/s of the
gas flows through it
Transcribed Image Text:Determine the power requirement (in kW) of the compressor if 5 mol/s of the gas flows through it
2. A gas at 300 K and 1 bar (state 1) flows through an adiabatic compressor and exits at 20
bar and 700 K (state 2). The gas obeys the following equation of state, where a and B are
constants.
v-B
The values are given as a = 10-3 _m³k
bar mol
the gas at 1 bar is Cp = 30
mol K
RT ар
+
P T
and B = 8 x 10-5 m³. The heat capacity of
mol
Transcribed Image Text:2. A gas at 300 K and 1 bar (state 1) flows through an adiabatic compressor and exits at 20 bar and 700 K (state 2). The gas obeys the following equation of state, where a and B are constants. v-B The values are given as a = 10-3 _m³k bar mol the gas at 1 bar is Cp = 30 mol K RT ар + P T and B = 8 x 10-5 m³. The heat capacity of mol
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